Merge pull request #1606 from mkreher13/transient-rewrite

Added classes to mgxs.py
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Paul Romano 2020-08-24 15:49:41 -05:00 committed by GitHub
commit 60c3a9dc4e
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13 changed files with 1146 additions and 2327 deletions

View file

@ -33,6 +33,7 @@ Multi-group Cross Sections
openmc.mgxs.AbsorptionXS
openmc.mgxs.CaptureXS
openmc.mgxs.Chi
openmc.mgxs.Current
openmc.mgxs.FissionXS
openmc.mgxs.InverseVelocity
openmc.mgxs.KappaFissionXS

View file

@ -36,7 +36,8 @@ MGXS_TYPES = (
'chi-prompt',
'inverse-velocity',
'prompt-nu-fission',
'prompt-nu-fission matrix'
'prompt-nu-fission matrix',
'current'
)
# Supported domain types
@ -507,7 +508,8 @@ class MGXS:
self._tallies[key] = openmc.Tally(name=self.name)
self._tallies[key].scores = [score]
self._tallies[key].estimator = estimator
self._tallies[key].filters = [domain_filter]
if score != 'current':
self._tallies[key].filters = [domain_filter]
# If a tally trigger was specified, add it to each tally
if self.tally_trigger:
@ -558,7 +560,10 @@ class MGXS:
domain_type = self.domain_type[4:-1]
else:
domain_type = self.domain_type
filter_type = _DOMAIN_TO_FILTER[domain_type]
if self._rxn_type == 'current':
filter_type = openmc.MeshSurfaceFilter
else:
filter_type = _DOMAIN_TO_FILTER[domain_type]
domain_filter = self.xs_tally.find_filter(filter_type)
return domain_filter.num_bins
@ -691,7 +696,7 @@ class MGXS:
Parameters
----------
mgxs_type : {'total', 'transport', 'nu-transport', 'absorption', 'capture', 'fission', 'nu-fission', 'kappa-fission', 'scatter', 'nu-scatter', 'scatter matrix', 'nu-scatter matrix', 'multiplicity matrix', 'nu-fission matrix', 'chi', 'chi-prompt', 'inverse-velocity', 'prompt-nu-fission', 'prompt-nu-fission matrix'}
mgxs_type : {'total', 'transport', 'nu-transport', 'absorption', 'capture', 'fission', 'nu-fission', 'kappa-fission', 'scatter', 'nu-scatter', 'scatter matrix', 'nu-scatter matrix', 'multiplicity matrix', 'nu-fission matrix', 'chi', 'chi-prompt', 'inverse-velocity', 'prompt-nu-fission', 'prompt-nu-fission matrix', 'current'}
The type of multi-group cross section object to return
domain : openmc.Material or openmc.Cell or openmc.Universe or openmc.RegularMesh
The domain for spatial homogenization
@ -769,6 +774,8 @@ class MGXS:
elif mgxs_type == 'prompt-nu-fission matrix':
mgxs = NuFissionMatrixXS(domain, domain_type, energy_groups,
prompt=True)
elif mgxs_type == 'current':
mgxs = Current(domain, domain_type, energy_groups)
mgxs.by_nuclide = by_nuclide
mgxs.name = name
@ -5891,3 +5898,472 @@ class InverseVelocity(MGXS):
else:
raise ValueError('Unable to return the units of InverseVelocity'
' for xs_type other than "macro"')
class MeshSurfaceMGXS(MGXS):
"""An abstract multi-group cross section for some energy group structure
on the surfaces of a mesh domain.
This class can be used for both OpenMC input generation and tally data
post-processing to compute surface- and energy-integrated multi-group cross
sections for multi-group neutronics calculations.
.. note:: Users should instantiate the subclasses of this abstract class.
Parameters
----------
domain : openmc.RegularMesh
The domain for spatial homogenization
domain_type : {'mesh'}
The domain type for spatial homogenization
energy_groups : openmc.mgxs.EnergyGroups
The energy group structure for energy condensation
by_nuclide : bool
Unused in MeshSurfaceMGXS
name : str, optional
Name of the multi-group cross section. Used as a label to identify
tallies in OpenMC 'tallies.xml' file.
Attributes
----------
name : str, optional
Name of the multi-group cross section
rxn_type : str
Reaction type (e.g., 'total', 'nu-fission', etc.)
by_nuclide : bool
Unused in MeshSurfaceMGXS
domain : Mesh
Domain for spatial homogenization
domain_type : {'mesh'}
Domain type for spatial homogenization
energy_groups : openmc.mgxs.EnergyGroups
Energy group structure for energy condensation
tally_trigger : openmc.Trigger
An (optional) tally precision trigger given to each tally used to
compute the cross section
scores : list of str
The scores in each tally used to compute the multi-group cross section
filters : list of openmc.Filter
The filters in each tally used to compute the multi-group cross section
tally_keys : list of str
The keys into the tallies dictionary for each tally used to compute
the multi-group cross section
estimator : {'analog'}
The tally estimator used to compute the multi-group cross section
tallies : collections.OrderedDict
OpenMC tallies needed to compute the multi-group cross section
rxn_rate_tally : openmc.Tally
Derived tally for the reaction rate tally used in the numerator to
compute the multi-group cross section. This attribute is None
unless the multi-group cross section has been computed.
xs_tally : openmc.Tally
Derived tally for the multi-group cross section. This attribute
is None unless the multi-group cross section has been computed.
num_subdomains : int
The number of subdomains is equal to the number of mesh surfaces times
two to account for both the incoming and outgoing current from the
mesh cell surfaces.
num_nuclides : int
Unused in MeshSurfaceMGXS
nuclides : Iterable of str or 'sum'
Unused in MeshSurfaceMGXS
sparse : bool
Whether or not the MGXS' tallies use SciPy's LIL sparse matrix format
for compressed data storage
loaded_sp : bool
Whether or not a statepoint file has been loaded with tally data
derived : bool
Whether or not the MGXS is merged from one or more other MGXS
hdf5_key : str
The key used to index multi-group cross sections in an HDF5 data store
"""
def __init__(self, domain=None, domain_type=None, energy_groups=None,
by_nuclide=False, name=''):
super(MeshSurfaceMGXS, self).__init__(domain, domain_type, energy_groups,
by_nuclide, name)
self._estimator = ['analog']
self._valid_estimators = ['analog']
@property
def scores(self):
return [self.rxn_type]
@property
def domain(self):
return self._domain
@property
def domain_type(self):
return self._domain_type
@domain.setter
def domain(self, domain):
cv.check_type('domain', domain, openmc.RegularMesh)
self._domain = domain
# Assign a domain type
if self.domain_type is None:
self._domain_type = 'mesh'
@domain_type.setter
def domain_type(self, domain_type):
cv.check_value('domain type', domain_type, 'mesh')
self._domain_type = domain_type
@property
def filters(self):
group_edges = self.energy_groups.group_edges
energy_filter = openmc.EnergyFilter(group_edges)
mesh = _DOMAIN_TO_FILTER[self.domain_type](self.domain).mesh
meshsurface_filter = openmc.MeshSurfaceFilter(mesh)
filters = [[meshsurface_filter, energy_filter]]
return self._add_angle_filters(filters)
@property
def xs_tally(self):
if self._xs_tally is None:
if self.tallies is None:
msg = 'Unable to get xs_tally since tallies have ' \
'not been loaded from a statepoint'
raise ValueError(msg)
self._xs_tally = self.rxn_rate_tally
self._compute_xs()
return self._xs_tally
def load_from_statepoint(self, statepoint):
"""Extracts tallies in an OpenMC StatePoint with the data needed to
compute multi-group cross sections.
This method is needed to compute cross section data from tallies
in an OpenMC StatePoint object.
.. note:: The statepoint must first be linked with a :class:`openmc.Summary`
object.
Parameters
----------
statepoint : openmc.StatePoint
An OpenMC StatePoint object with tally data
Raises
------
ValueError
When this method is called with a statepoint that has not been
linked with a summary object.
"""
cv.check_type('statepoint', statepoint, openmc.statepoint.StatePoint)
if statepoint.summary is None:
msg = 'Unable to load data from a statepoint which has not been ' \
'linked with a summary file'
raise ValueError(msg)
filters= []
filter_bins = []
# Clear any tallies previously loaded from a statepoint
if self.loaded_sp:
self._tallies = None
self._xs_tally = None
self._rxn_rate_tally = None
self._loaded_sp = False
# Find, slice and store Tallies from StatePoint
# The tally slicing is needed if tally merging was used
for tally_type, tally in self.tallies.items():
sp_tally = statepoint.get_tally(
tally.scores, tally.filters, tally.nuclides,
estimator=tally.estimator, exact_filters=True)
sp_tally = sp_tally.get_slice(
tally.scores, filters, filter_bins, tally.nuclides)
sp_tally.sparse = self.sparse
self.tallies[tally_type] = sp_tally
self._loaded_sp = True
def get_xs(self, groups='all', subdomains='all', nuclides='all',
xs_type='macro', order_groups='increasing',
value='mean', squeeze=True, **kwargs):
r"""Returns an array of multi-group cross sections.
This method constructs a 3D NumPy array for the requested
multi-group cross section data for one or more subdomains
(1st dimension), energy groups (2nd dimension), and nuclides
(3rd dimension).
Parameters
----------
groups : Iterable of Integral or 'all'
Energy groups of interest. Defaults to 'all'.
subdomains : Iterable of Integral or 'all'
Subdomain IDs of interest. Defaults to 'all'.
nuclides : Iterable of str or 'all' or 'sum'
Unused in MeshSurfaceMGXS, its value will be ignored. The nuclides
dimension of the resultant array will always have a length of 1.
xs_type: {'macro'}
The 'macro'/'micro' distinction does not apply to MeshSurfaceMGXS.
The calculation of a 'micro' xs_type is omited in this class.
order_groups: {'increasing', 'decreasing'}
Return the cross section indexed according to increasing or
decreasing energy groups (decreasing or increasing energies).
Defaults to 'increasing'.
value : {'mean', 'std_dev', 'rel_err'}
A string for the type of value to return. Defaults to 'mean'.
squeeze : bool
A boolean representing whether to eliminate the extra dimensions
of the multi-dimensional array to be returned. Defaults to True.
Returns
-------
numpy.ndarray
A NumPy array of the multi-group cross section indexed in the order
each group, subdomain and nuclide is listed in the parameters.
Raises
------
ValueError
When this method is called before the multi-group cross section is
computed from tally data.
"""
cv.check_value('value', value, ['mean', 'std_dev', 'rel_err'])
cv.check_value('xs_type', xs_type, ['macro'])
filters = []
filter_bins = []
# Construct a collection of the domain filter bins
if not isinstance(subdomains, str):
cv.check_iterable_type('subdomains', subdomains, Integral,
max_depth=3)
filters.append(_DOMAIN_TO_FILTER[self.domain_type])
subdomain_bins = []
for subdomain in subdomains:
subdomain_bins.append(subdomain)
filter_bins.append(tuple(subdomain_bins))
xs = self.xs_tally.get_values(filters=filters,
filter_bins=filter_bins, value=value)
# Construct list of energy group bounds tuples for all requested groups
if not isinstance(groups, str):
cv.check_iterable_type('groups', groups, Integral)
filters.append(openmc.EnergyFilter)
energy_bins = []
for group in groups:
energy_bins.append(
(self.energy_groups.get_group_bounds(group),))
filter_bins.append(tuple(energy_bins))
# Eliminate the trivial score dimension
xs = np.squeeze(xs, axis=len(xs.shape) - 1)
xs = np.nan_to_num(xs)
if groups == 'all':
num_groups = self.num_groups
else:
num_groups = len(groups)
# Reshape tally data array with separate axes for domain and energy
# Accomodate the polar and azimuthal bins if needed
num_surfaces = 4 * self.domain.n_dimension
num_subdomains = int(xs.shape[0] / (num_groups * self.num_polar *
self.num_azimuthal * num_surfaces))
if self.num_polar > 1 or self.num_azimuthal > 1:
new_shape = (self.num_polar, self.num_azimuthal, num_subdomains,
num_groups, num_surfaces)
else:
new_shape = (num_subdomains, num_groups, num_surfaces)
new_shape += xs.shape[1:]
new_xs = np.zeros(new_shape)
for cell in range(num_subdomains):
for g in range(num_groups):
for s in range(num_surfaces):
new_xs[cell,g,s] = \
xs[cell*num_surfaces*num_groups+s*num_groups+g]
xs = new_xs
# Reverse data if user requested increasing energy groups since
# tally data is stored in order of increasing energies
if order_groups == 'increasing':
xs = xs[..., ::-1, :, :]
if squeeze:
# We want to squeeze out everything but the polar, azimuthal,
# and energy group data.
xs = self._squeeze_xs(xs)
return xs
def get_pandas_dataframe(self, groups='all', nuclides='all',
xs_type='macro', paths=True):
"""Build a Pandas DataFrame for the MGXS data.
This method leverages :meth:`openmc.Tally.get_pandas_dataframe`, but
renames the columns with terminology appropriate for cross section data.
Parameters
----------
groups : Iterable of Integral or 'all'
Energy groups of interest. Defaults to 'all'.
nuclides : Iterable of str or 'all' or 'sum'
Unused in MeshSurfaceMGXS, its value will be ignored. The nuclides
dimension of the resultant array will always have a length of 1.
xs_type: {'macro'}
'micro' unused in MeshSurfaceMGXS.
paths : bool, optional
Construct columns for distribcell tally filters (default is True).
The geometric information in the Summary object is embedded into
a Multi-index column with a geometric "path" to each distribcell
instance.
Returns
-------
pandas.DataFrame
A Pandas DataFrame for the cross section data.
Raises
------
ValueError
When this method is called before the multi-group cross section is
computed from tally data.
"""
if not isinstance(groups, str):
cv.check_iterable_type('groups', groups, Integral)
cv.check_value('xs_type', xs_type, ['macro'])
df = self.xs_tally.get_pandas_dataframe(paths=paths)
# Remove the score column since it is homogeneous and redundant
df = df.drop('score', axis=1, level=0)
# Convert azimuthal, polar, energy in and energy out bin values in to
# bin indices
columns = self._df_convert_columns_to_bins(df)
# Select out those groups the user requested
if not isinstance(groups, str):
if 'group in' in df:
df = df[df['group in'].isin(groups)]
if 'group out' in df:
df = df[df['group out'].isin(groups)]
mesh_str = 'mesh {0}'.format(self.domain.id)
col_key = (mesh_str, 'surf')
surfaces = df.pop(col_key)
df.insert(len(self.domain.dimension), col_key, surfaces)
if len(self.domain.dimension) == 1:
df.sort_values(by=[(mesh_str, 'x'), (mesh_str, 'surf')]
+ columns, inplace=True)
elif len(self.domain.dimension) == 2:
df.sort_values(by=[(mesh_str, 'x'), (mesh_str, 'y'),
(mesh_str, 'surf')] + columns, inplace=True)
elif len(self.domain.dimension) == 3:
df.sort_values(by=[(mesh_str, 'x'), (mesh_str, 'y'),
(mesh_str, 'z'), (mesh_str, 'surf')] + columns, inplace=True)
return df
class Current(MeshSurfaceMGXS):
r"""A current multi-group cross section.
This class can be used for both OpenMC input generation and tally data
post-processing to compute surface- and energy-integrated
multi-group current cross sections for multi-group neutronics calculations. At
a minimum, one needs to set the :attr:`Current.energy_groups` and
:attr:`Current.domain` properties. Tallies for the appropriate
reaction rates over the specified domain are generated automatically via the
:attr:`Current.tallies` property, which can then be appended to a
:class:`openmc.Tallies` instance.
For post-processing, the :meth:`MGXS.load_from_statepoint` will pull in the
necessary data to compute multi-group cross sections from a
:class:`openmc.StatePoint` instance. The derived multi-group cross section
can then be obtained from the :attr:`Current.xs_tally` property.
For a spatial domain :math:`S` and energy group :math:`[E_g,E_{g-1}]`, the
total cross section is calculated as:
.. math::
\frac{\int_{r \in S} dS \int_{E_g}^{E_{g-1}} dE \;
J(r, E)}{\int_{r \in S} dS \int_{E_g}^{E_{g-1}} dE}.
Parameters
----------
domain : openmc.RegularMesh
The domain for spatial homogenization
domain_type : ('mesh'}
The domain type for spatial homogenization
groups : openmc.mgxs.EnergyGroups
The energy group structure for energy condensation
by_nuclide : bool
Unused in MeshSurfaceMGXS
name : str, optional
Name of the multi-group cross section. Used as a label to identify
tallies in OpenMC 'tallies.xml' file.
Attributes
----------
name : str, optional
Name of the multi-group cross section
rxn_type : str
Reaction type (e.g., 'total', 'nu-fission', etc.)
by_nuclide : bool
Unused in MeshSurfaceMGXS
domain : openmc.RegularMesh
Domain for spatial homogenization
domain_type : {'mesh'}
Domain type for spatial homogenization
energy_groups : openmc.mgxs.EnergyGroups
Energy group structure for energy condensation
tally_trigger : openmc.Trigger
An (optional) tally precision trigger given to each tally used to
compute the cross section
scores : list of str
The scores in each tally used to compute the multi-group cross section
filters : list of openmc.Filter
The filters in each tally used to compute the multi-group cross section
tally_keys : list of str
The keys into the tallies dictionary for each tally used to compute
the multi-group cross section
estimator : {'analog'}
The tally estimator used to compute the multi-group cross section
tallies : collections.OrderedDict
OpenMC tallies needed to compute the multi-group cross section. The keys
are strings listed in the :attr:`TotalXS.tally_keys` property and values
are instances of :class:`openmc.Tally`.
rxn_rate_tally : openmc.Tally
Derived tally for the reaction rate tally used in the numerator to
compute the multi-group cross section. This attribute is None
unless the multi-group cross section has been computed.
xs_tally : openmc.Tally
Derived tally for the multi-group cross section. This attribute
is None unless the multi-group cross section has been computed.
num_subdomains : int
The number of subdomains is equal to the number of mesh surfaces times
two to account for both the incoming and outgoing current from the
mesh cell surfaces.
num_nuclides : int
Unused in MeshSurfaceMGXS
nuclides : Iterable of str or 'sum'
Unused in MeshSurfaceMGXS
sparse : bool
Whether or not the MGXS' tallies use SciPy's LIL sparse matrix format
for compressed data storage
loaded_sp : bool
Whether or not a statepoint file has been loaded with tally data
derived : bool
Whether or not the MGXS is merged from one or more other MGXS
hdf5_key : str
The key used to index multi-group cross sections in an HDF5 data store
"""
def __init__(self, domain=None, domain_type=None,
groups=None, by_nuclide=False, name=''):
super(Current, self).__init__(domain, domain_type,
groups, by_nuclide, name)
self._rxn_type = 'current'

View file

@ -50,7 +50,12 @@
</settings>
<?xml version='1.0' encoding='utf-8'?>
<tallies>
<filter id="1" type="material">
<mesh id="1">
<dimension>2 2</dimension>
<lower_left>-100.0 -100.0</lower_left>
<width>100.0 100.0</width>
</mesh>
<filter id="1" type="mesh">
<bins>1</bins>
</filter>
<filter id="2" type="energy">
@ -68,15 +73,12 @@
<filter id="52" type="energy">
<bins>0.0 20000000.0</bins>
</filter>
<filter id="65" type="delayedgroup">
<filter id="66" type="meshsurface">
<bins>1</bins>
</filter>
<filter id="69" type="delayedgroup">
<bins>1 2 3 4 5 6</bins>
</filter>
<filter id="80" type="material">
<bins>2</bins>
</filter>
<filter id="159" type="material">
<bins>3</bins>
</filter>
<tally id="1">
<filters>1 2</filters>
<nuclides>total</nuclides>
@ -384,793 +386,67 @@
<estimator>analog</estimator>
</tally>
<tally id="52">
<filters>66 2</filters>
<nuclides>total</nuclides>
<scores>current</scores>
<estimator>analog</estimator>
</tally>
<tally id="53">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="53">
<filters>1 65 2</filters>
<tally id="54">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="54">
<filters>1 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="55">
<filters>1 65 5</filters>
<filters>1 69 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="56">
<filters>1 69 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="57">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="57">
<filters>1 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="58">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="59">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<tally id="61">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="61">
<filters>1 65 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="62">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="63">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="64">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="65">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="66">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="67">
<filters>80 5 6</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="68">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="69">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="70">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="71">
<filters>80 5 6</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="72">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="73">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="74">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="75">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="76">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="77">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="78">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="79">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="80">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="81">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="82">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>kappa-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="83">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="84">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="85">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="86">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="87">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="88">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="89">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="90">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="91">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="92">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="93">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="94">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="95">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="96">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="97">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="98">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="99">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="100">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="101">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="102">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="103">
<filters>80 52</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="104">
<filters>80 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="105">
<filters>80 52</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="106">
<filters>80 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="107">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="108">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>inverse-velocity</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="109">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="110">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="111">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="112">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="113">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="114">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="115">
<filters>80 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="116">
<filters>80 65 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="117">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="118">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="119">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="120">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="121">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="122">
<filters>80 65 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="123">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="124">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="125">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="126">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="127">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="128">
<filters>159 5 6</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="129">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="130">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="131">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="132">
<filters>159 5 6</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="133">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="134">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="135">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="136">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="137">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="138">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="139">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="140">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="141">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="142">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="143">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>kappa-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="144">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="145">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="146">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="147">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="148">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="149">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="150">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="151">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="152">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="153">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="154">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="155">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="156">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="157">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="158">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="159">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="160">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="161">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="162">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="163">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="164">
<filters>159 52</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="165">
<filters>159 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="166">
<filters>159 52</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="167">
<filters>159 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="168">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="169">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>inverse-velocity</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="170">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="171">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="172">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="173">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="174">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="175">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="176">
<filters>159 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="177">
<filters>159 65 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="178">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="179">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="180">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="181">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="182">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="183">
<filters>159 65 2 5</filters>
<filters>1 69 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>

View file

@ -1,273 +1,344 @@
material group in nuclide mean std. dev.
0 1 1 total 0.453624 0.021053
material group in nuclide mean std. dev.
0 1 1 total 0.4074 0.021863
material group in nuclide mean std. dev.
0 1 1 total 0.4074 0.021863
material group in nuclide mean std. dev.
0 1 1 total 0.064903 0.004313
material group in nuclide mean std. dev.
0 1 1 total 0.028048 0.00458
material group in nuclide mean std. dev.
0 1 1 total 0.036855 0.002622
material group in nuclide mean std. dev.
0 1 1 total 0.090649 0.00641
material group in nuclide mean std. dev.
0 1 1 total 7.137954e+06 507363.467231
material group in nuclide mean std. dev.
0 1 1 total 0.388721 0.01783
material group in nuclide mean std. dev.
0 1 1 total 0.389304 0.023076
material group in group out legendre nuclide mean std. dev.
0 1 1 1 P0 total 0.389304 0.023146
1 1 1 1 P1 total 0.046224 0.005907
2 1 1 1 P2 total 0.017984 0.002883
3 1 1 1 P3 total 0.006628 0.002457
material group in group out legendre nuclide mean std. dev.
0 1 1 1 P0 total 0.389304 0.023146
1 1 1 1 P1 total 0.046224 0.005907
2 1 1 1 P2 total 0.017984 0.002883
3 1 1 1 P3 total 0.006628 0.002457
material group in group out nuclide mean std. dev.
0 1 1 1 total 1.0 0.066111
material group in group out nuclide mean std. dev.
0 1 1 1 total 0.085835 0.005592
material group in group out nuclide mean std. dev.
0 1 1 1 total 1.0 0.066111
material group in group out legendre nuclide mean std. dev.
0 1 1 1 P0 total 0.388721 0.031279
1 1 1 1 P1 total 0.046155 0.006407
2 1 1 1 P2 total 0.017957 0.003039
3 1 1 1 P3 total 0.006618 0.002480
material group in group out legendre nuclide mean std. dev.
0 1 1 1 P0 total 0.388721 0.040482
1 1 1 1 P1 total 0.046155 0.007097
2 1 1 1 P2 total 0.017957 0.003262
3 1 1 1 P3 total 0.006618 0.002518
material group out nuclide mean std. dev.
0 1 1 total 1.0 0.046071
material group out nuclide mean std. dev.
0 1 1 total 1.0 0.051471
material group in nuclide mean std. dev.
0 1 1 total 4.996730e-07 3.650633e-08
material group in nuclide mean std. dev.
0 1 1 total 0.090004 0.006367
material group in group out nuclide mean std. dev.
0 1 1 1 total 0.084542 0.005716
material delayedgroup group in nuclide mean std. dev.
0 1 1 1 total 0.000021 0.000001
1 1 2 1 total 0.000110 0.000008
2 1 3 1 total 0.000107 0.000007
3 1 4 1 total 0.000249 0.000017
4 1 5 1 total 0.000112 0.000007
5 1 6 1 total 0.000046 0.000003
material delayedgroup group out nuclide mean std. dev.
0 1 1 1 total 0.0 0.000000
1 1 2 1 total 1.0 0.869128
2 1 3 1 total 1.0 1.414214
3 1 4 1 total 1.0 0.360359
4 1 5 1 total 0.0 0.000000
5 1 6 1 total 0.0 0.000000
material delayedgroup group in nuclide mean std. dev.
0 1 1 1 total 0.000227 0.000020
1 1 2 1 total 0.001214 0.000108
2 1 3 1 total 0.001184 0.000104
3 1 4 1 total 0.002752 0.000240
4 1 5 1 total 0.001231 0.000105
5 1 6 1 total 0.000512 0.000044
material delayedgroup group in nuclide mean std. dev.
0 1 1 1 total 0.013355 0.001207
1 1 2 1 total 0.032600 0.002866
2 1 3 1 total 0.121083 0.010442
3 1 4 1 total 0.305910 0.025627
4 1 5 1 total 0.861934 0.068281
5 1 6 1 total 2.895065 0.230223
material delayedgroup group in group out nuclide mean std. dev.
0 1 1 1 1 total 0.000000 0.000000
1 1 2 1 1 total 0.000384 0.000236
2 1 3 1 1 total 0.000179 0.000180
3 1 4 1 1 total 0.000730 0.000188
4 1 5 1 1 total 0.000000 0.000000
5 1 6 1 1 total 0.000000 0.000000
material group in nuclide mean std. dev.
0 2 1 total 0.311594 0.013793
material group in nuclide mean std. dev.
0 2 1 total 0.280977 0.015683
material group in nuclide mean std. dev.
0 2 1 total 0.280977 0.015683
material group in nuclide mean std. dev.
0 2 1 total 0.00221 0.000286
material group in nuclide mean std. dev.
0 2 1 total 0.00221 0.000286
material group in nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 2 1 total 0.309384 0.013551
material group in nuclide mean std. dev.
0 2 1 total 0.307987 0.029308
material group in group out legendre nuclide mean std. dev.
0 2 1 1 P0 total 0.307987 0.029308
1 2 1 1 P1 total 0.030617 0.007464
2 2 1 1 P2 total 0.018911 0.004323
3 2 1 1 P3 total 0.006235 0.003338
material group in group out legendre nuclide mean std. dev.
0 2 1 1 P0 total 0.307987 0.029308
1 2 1 1 P1 total 0.030617 0.007464
2 2 1 1 P2 total 0.018911 0.004323
3 2 1 1 P3 total 0.006235 0.003338
material group in group out nuclide mean std. dev.
0 2 1 1 total 1.0 0.095039
material group in group out nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
material group in group out nuclide mean std. dev.
0 2 1 1 total 1.0 0.095039
material group in group out legendre nuclide mean std. dev.
0 2 1 1 P0 total 0.309384 0.032376
1 2 1 1 P1 total 0.030756 0.007617
2 2 1 1 P2 total 0.018997 0.004420
3 2 1 1 P3 total 0.006263 0.003364
material group in group out legendre nuclide mean std. dev.
0 2 1 1 P0 total 0.309384 0.043735
1 2 1 1 P1 total 0.030756 0.008159
2 2 1 1 P2 total 0.018997 0.004775
3 2 1 1 P3 total 0.006263 0.003417
material group out nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group out nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 2 1 total 5.454762e-07 4.949807e-08
material group in nuclide mean std. dev.
0 2 1 total 0.0 0.0
material group in group out nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
1 2 2 1 total 0.0 0.0
2 2 3 1 total 0.0 0.0
3 2 4 1 total 0.0 0.0
4 2 5 1 total 0.0 0.0
5 2 6 1 total 0.0 0.0
material delayedgroup group out nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
1 2 2 1 total 0.0 0.0
2 2 3 1 total 0.0 0.0
3 2 4 1 total 0.0 0.0
4 2 5 1 total 0.0 0.0
5 2 6 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
1 2 2 1 total 0.0 0.0
2 2 3 1 total 0.0 0.0
3 2 4 1 total 0.0 0.0
4 2 5 1 total 0.0 0.0
5 2 6 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 2 1 1 total 0.0 0.0
1 2 2 1 total 0.0 0.0
2 2 3 1 total 0.0 0.0
3 2 4 1 total 0.0 0.0
4 2 5 1 total 0.0 0.0
5 2 6 1 total 0.0 0.0
material delayedgroup group in group out nuclide mean std. dev.
0 2 1 1 1 total 0.0 0.0
1 2 2 1 1 total 0.0 0.0
2 2 3 1 1 total 0.0 0.0
3 2 4 1 1 total 0.0 0.0
4 2 5 1 1 total 0.0 0.0
5 2 6 1 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 3 1 total 0.904999 0.043964
material group in nuclide mean std. dev.
0 3 1 total 0.494581 0.046763
material group in nuclide mean std. dev.
0 3 1 total 0.494581 0.046763
material group in nuclide mean std. dev.
0 3 1 total 0.00606 0.000555
material group in nuclide mean std. dev.
0 3 1 total 0.00606 0.000555
material group in nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 3 1 total 0.898938 0.043493
material group in nuclide mean std. dev.
0 3 1 total 0.903415 0.043959
material group in group out legendre nuclide mean std. dev.
0 3 1 1 P0 total 0.903415 0.043586
1 3 1 1 P1 total 0.410417 0.015877
2 3 1 1 P2 total 0.143301 0.007187
3 3 1 1 P3 total 0.008739 0.003571
material group in group out legendre nuclide mean std. dev.
0 3 1 1 P0 total 0.903415 0.043586
1 3 1 1 P1 total 0.410417 0.015877
2 3 1 1 P2 total 0.143301 0.007187
3 3 1 1 P3 total 0.008739 0.003571
material group in group out nuclide mean std. dev.
0 3 1 1 total 1.0 0.056867
material group in group out nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
material group in group out nuclide mean std. dev.
0 3 1 1 total 1.0 0.056867
material group in group out legendre nuclide mean std. dev.
0 3 1 1 P0 total 0.898938 0.067118
1 3 1 1 P1 total 0.408384 0.028127
2 3 1 1 P2 total 0.142591 0.010824
3 3 1 1 P3 total 0.008696 0.003588
material group in group out legendre nuclide mean std. dev.
0 3 1 1 P0 total 0.898938 0.084369
1 3 1 1 P1 total 0.408384 0.036475
2 3 1 1 P2 total 0.142591 0.013525
3 3 1 1 P3 total 0.008696 0.003622
material group out nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group out nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group in nuclide mean std. dev.
0 3 1 total 5.773007e-07 5.322133e-08
material group in nuclide mean std. dev.
0 3 1 total 0.0 0.0
material group in group out nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
1 3 2 1 total 0.0 0.0
2 3 3 1 total 0.0 0.0
3 3 4 1 total 0.0 0.0
4 3 5 1 total 0.0 0.0
5 3 6 1 total 0.0 0.0
material delayedgroup group out nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
1 3 2 1 total 0.0 0.0
2 3 3 1 total 0.0 0.0
3 3 4 1 total 0.0 0.0
4 3 5 1 total 0.0 0.0
5 3 6 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
1 3 2 1 total 0.0 0.0
2 3 3 1 total 0.0 0.0
3 3 4 1 total 0.0 0.0
4 3 5 1 total 0.0 0.0
5 3 6 1 total 0.0 0.0
material delayedgroup group in nuclide mean std. dev.
0 3 1 1 total 0.0 0.0
1 3 2 1 total 0.0 0.0
2 3 3 1 total 0.0 0.0
3 3 4 1 total 0.0 0.0
4 3 5 1 total 0.0 0.0
5 3 6 1 total 0.0 0.0
material delayedgroup group in group out nuclide mean std. dev.
0 3 1 1 1 total 0.0 0.0
1 3 2 1 1 total 0.0 0.0
2 3 3 1 1 total 0.0 0.0
3 3 4 1 1 total 0.0 0.0
4 3 5 1 1 total 0.0 0.0
5 3 6 1 1 total 0.0 0.0
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.689569 0.031419
2 1 2 1 1 total 0.699649 0.037450
1 2 1 1 1 total 0.714582 0.039410
3 2 2 1 1 total 0.703950 0.032472
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.439891 0.034895
2 1 2 1 1 total 0.439954 0.039793
1 2 1 1 1 total 0.464255 0.041680
3 2 2 1 1 total 0.448543 0.035418
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.439891 0.034895
2 1 2 1 1 total 0.439954 0.039793
1 2 1 1 1 total 0.464255 0.041680
3 2 2 1 1 total 0.448543 0.035418
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.022628 0.001277
2 1 2 1 1 total 0.023156 0.001846
1 2 1 1 1 total 0.025056 0.002068
3 2 2 1 1 total 0.023894 0.001806
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.011639 0.001313
2 1 2 1 1 total 0.011902 0.001887
1 2 1 1 1 total 0.013610 0.002138
3 2 2 1 1 total 0.012379 0.001964
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.010989 0.000600
2 1 2 1 1 total 0.011254 0.000888
1 2 1 1 1 total 0.011446 0.000917
3 2 2 1 1 total 0.011515 0.001091
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.027048 0.001467
2 1 2 1 1 total 0.027679 0.002173
1 2 1 1 1 total 0.028152 0.002239
3 2 2 1 1 total 0.028305 0.002664
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 2.128551e+06 116174.136443
2 1 2 1 1 total 2.179625e+06 171863.153028
1 2 1 1 1 total 2.216815e+06 177355.380518
3 2 2 1 1 total 2.229909e+06 211056.365380
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.666941 0.030331
2 1 2 1 1 total 0.676493 0.035733
1 2 1 1 1 total 0.689526 0.037499
3 2 2 1 1 total 0.680056 0.031192
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.666776 0.041465
2 1 2 1 1 total 0.681119 0.037897
1 2 1 1 1 total 0.680135 0.040329
3 2 2 1 1 total 0.673685 0.034317
mesh 1 group in group out legendre nuclide mean std. dev.
x y z
0 1 1 1 1 1 P0 total 0.666776 0.040502
1 1 1 1 1 1 P1 total 0.249678 0.015165
2 1 1 1 1 1 P2 total 0.084904 0.007439
3 1 1 1 1 1 P3 total 0.004671 0.003362
8 1 2 1 1 1 P0 total 0.681119 0.037746
9 1 2 1 1 1 P1 total 0.259694 0.013458
10 1 2 1 1 1 P2 total 0.093376 0.006988
11 1 2 1 1 1 P3 total 0.009055 0.004266
4 2 1 1 1 1 P0 total 0.680135 0.039913
5 2 1 1 1 1 P1 total 0.250326 0.013593
6 2 1 1 1 1 P2 total 0.094891 0.008015
7 2 1 1 1 1 P3 total 0.012214 0.002309
12 2 2 1 1 1 P0 total 0.673685 0.034716
13 2 2 1 1 1 P1 total 0.255408 0.014000
14 2 2 1 1 1 P2 total 0.087139 0.006220
15 2 2 1 1 1 P3 total 0.005092 0.005661
mesh 1 group in group out legendre nuclide mean std. dev.
x y z
0 1 1 1 1 1 P0 total 0.666776 0.040502
1 1 1 1 1 1 P1 total 0.249678 0.015165
2 1 1 1 1 1 P2 total 0.084904 0.007439
3 1 1 1 1 1 P3 total 0.004671 0.003362
8 1 2 1 1 1 P0 total 0.681119 0.037746
9 1 2 1 1 1 P1 total 0.259694 0.013458
10 1 2 1 1 1 P2 total 0.093376 0.006988
11 1 2 1 1 1 P3 total 0.009055 0.004266
4 2 1 1 1 1 P0 total 0.680135 0.039913
5 2 1 1 1 1 P1 total 0.250326 0.013593
6 2 1 1 1 1 P2 total 0.094891 0.008015
7 2 1 1 1 1 P3 total 0.012214 0.002309
12 2 2 1 1 1 P0 total 0.673685 0.034716
13 2 2 1 1 1 P1 total 0.255408 0.014000
14 2 2 1 1 1 P2 total 0.087139 0.006220
15 2 2 1 1 1 P3 total 0.005092 0.005661
mesh 1 group in group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 1.0 0.070099
2 1 2 1 1 1 total 1.0 0.062344
1 2 1 1 1 1 total 1.0 0.062771
3 2 2 1 1 1 total 1.0 0.049705
mesh 1 group in group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.028673 0.004228
2 1 2 1 1 1 total 0.026964 0.003732
1 2 1 1 1 1 total 0.026070 0.003550
3 2 2 1 1 1 total 0.024753 0.003145
mesh 1 group in group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 1.0 0.070099
2 1 2 1 1 1 total 1.0 0.062344
1 2 1 1 1 1 total 1.0 0.062771
3 2 2 1 1 1 total 1.0 0.049705
mesh 1 group in group out legendre nuclide mean std. dev.
x y z
0 1 1 1 1 1 P0 total 0.666941 0.055729
1 1 1 1 1 1 P1 total 0.249740 0.020867
2 1 1 1 1 1 P2 total 0.084925 0.008895
3 1 1 1 1 1 P3 total 0.004673 0.003374
8 1 2 1 1 1 P0 total 0.676493 0.055277
9 1 2 1 1 1 P1 total 0.257931 0.020458
10 1 2 1 1 1 P2 total 0.092742 0.008898
11 1 2 1 1 1 P3 total 0.008994 0.004272
4 2 1 1 1 1 P0 total 0.689526 0.057267
5 2 1 1 1 1 P1 total 0.253783 0.020306
6 2 1 1 1 1 P2 total 0.096202 0.009899
7 2 1 1 1 1 P3 total 0.012383 0.002451
12 2 2 1 1 1 P0 total 0.680056 0.045995
13 2 2 1 1 1 P1 total 0.257823 0.018090
14 2 2 1 1 1 P2 total 0.087963 0.007367
15 2 2 1 1 1 P3 total 0.005140 0.005719
mesh 1 group in group out legendre nuclide mean std. dev.
x y z
0 1 1 1 1 1 P0 total 0.666941 0.072742
1 1 1 1 1 1 P1 total 0.249740 0.027238
2 1 1 1 1 1 P2 total 0.084925 0.010703
3 1 1 1 1 1 P3 total 0.004673 0.003390
8 1 2 1 1 1 P0 total 0.676493 0.069529
9 1 2 1 1 1 P1 total 0.257931 0.026022
10 1 2 1 1 1 P2 total 0.092742 0.010612
11 1 2 1 1 1 P3 total 0.008994 0.004308
4 2 1 1 1 1 P0 total 0.689526 0.071784
5 2 1 1 1 1 P1 total 0.253783 0.025809
6 2 1 1 1 1 P2 total 0.096202 0.011596
7 2 1 1 1 1 P3 total 0.012383 0.002571
12 2 2 1 1 1 P0 total 0.680056 0.057080
13 2 2 1 1 1 P1 total 0.257823 0.022170
14 2 2 1 1 1 P2 total 0.087963 0.008567
15 2 2 1 1 1 P3 total 0.005140 0.005725
mesh 1 group out nuclide mean std. dev.
x y z
0 1 1 1 1 total 1.0 0.121554
2 1 2 1 1 total 1.0 0.216579
1 2 1 1 1 total 1.0 0.183339
3 2 2 1 1 total 1.0 0.153219
mesh 1 group out nuclide mean std. dev.
x y z
0 1 1 1 1 total 1.0 0.115075
2 1 2 1 1 total 1.0 0.214629
1 2 1 1 1 total 1.0 0.193610
3 2 2 1 1 total 1.0 0.149674
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 5.326584e-07 4.351904e-08
2 1 2 1 1 total 5.450392e-07 5.612731e-08
1 2 1 1 1 total 5.715661e-07 6.214803e-08
3 2 2 1 1 total 5.509404e-07 4.361226e-08
mesh 1 group in nuclide mean std. dev.
x y z
0 1 1 1 1 total 0.026854 0.001457
2 1 2 1 1 total 0.027482 0.002158
1 2 1 1 1 total 0.027951 0.002224
3 2 2 1 1 total 0.028105 0.002647
mesh 1 group in group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.028472 0.004077
2 1 2 1 1 1 total 0.026236 0.003570
1 2 1 1 1 1 total 0.025851 0.003683
3 2 2 1 1 1 total 0.024301 0.002974
mesh 1 group in nuclide mean std. dev.
x y surf
3 1 1 x-max in 1 total 4.570 0.073566
2 1 1 x-max out 1 total 4.566 0.097365
1 1 1 x-min in 1 total 0.000 0.000000
0 1 1 x-min out 1 total 0.000 0.000000
7 1 1 y-max in 1 total 4.544 0.163303
6 1 1 y-max out 1 total 4.524 0.143457
5 1 1 y-min in 1 total 0.000 0.000000
4 1 1 y-min out 1 total 0.000 0.000000
19 1 2 x-max in 1 total 4.446 0.192083
18 1 2 x-max out 1 total 4.448 0.134907
17 1 2 x-min in 1 total 0.000 0.000000
16 1 2 x-min out 1 total 0.000 0.000000
23 1 2 y-max in 1 total 0.000 0.000000
22 1 2 y-max out 1 total 0.000 0.000000
21 1 2 y-min in 1 total 4.524 0.143457
20 1 2 y-min out 1 total 4.544 0.163303
11 2 1 x-max in 1 total 0.000 0.000000
10 2 1 x-max out 1 total 0.000 0.000000
9 2 1 x-min in 1 total 4.566 0.097365
8 2 1 x-min out 1 total 4.570 0.073566
15 2 1 y-max in 1 total 4.422 0.100270
14 2 1 y-max out 1 total 4.424 0.145141
13 2 1 y-min in 1 total 0.000 0.000000
12 2 1 y-min out 1 total 0.000 0.000000
27 2 2 x-max in 1 total 0.000 0.000000
26 2 2 x-max out 1 total 0.000 0.000000
25 2 2 x-min in 1 total 4.448 0.134907
24 2 2 x-min out 1 total 4.446 0.192083
31 2 2 y-max in 1 total 0.000 0.000000
30 2 2 y-max out 1 total 0.000 0.000000
29 2 2 y-min in 1 total 4.424 0.145141
28 2 2 y-min out 1 total 4.422 0.100270
mesh 1 delayedgroup group in nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.000006 3.337014e-07
1 1 1 1 2 1 total 0.000033 1.744448e-06
2 1 1 1 3 1 total 0.000032 1.680053e-06
3 1 1 1 4 1 total 0.000075 3.832256e-06
4 1 1 1 5 1 total 0.000034 1.657860e-06
5 1 1 1 6 1 total 0.000014 6.911218e-07
12 1 2 1 1 1 total 0.000006 4.935854e-07
13 1 2 1 2 1 total 0.000034 2.586377e-06
14 1 2 1 3 1 total 0.000033 2.493442e-06
15 1 2 1 4 1 total 0.000076 5.693867e-06
16 1 2 1 5 1 total 0.000034 2.461606e-06
17 1 2 1 6 1 total 0.000014 1.026406e-06
6 2 1 1 1 1 total 0.000006 5.092712e-07
7 2 1 1 2 1 total 0.000034 2.652677e-06
8 2 1 1 3 1 total 0.000033 2.547698e-06
9 2 1 1 4 1 total 0.000077 5.777683e-06
10 2 1 1 5 1 total 0.000035 2.451184e-06
11 2 1 1 6 1 total 0.000014 1.023674e-06
18 2 2 1 1 1 total 0.000006 6.058589e-07
19 2 2 1 2 1 total 0.000034 3.154428e-06
20 2 2 1 3 1 total 0.000033 3.028038e-06
21 2 2 1 4 1 total 0.000077 6.857868e-06
22 2 2 1 5 1 total 0.000034 2.893043e-06
23 2 2 1 6 1 total 0.000014 1.208895e-06
mesh 1 delayedgroup group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.0 0.000000
1 1 1 1 2 1 total 0.0 0.000000
2 1 1 1 3 1 total 0.0 0.000000
3 1 1 1 4 1 total 1.0 1.414214
4 1 1 1 5 1 total 0.0 0.000000
5 1 1 1 6 1 total 0.0 0.000000
12 1 2 1 1 1 total 0.0 0.000000
13 1 2 1 2 1 total 1.0 1.414214
14 1 2 1 3 1 total 0.0 0.000000
15 1 2 1 4 1 total 1.0 0.867638
16 1 2 1 5 1 total 0.0 0.000000
17 1 2 1 6 1 total 0.0 0.000000
6 2 1 1 1 1 total 0.0 0.000000
7 2 1 1 2 1 total 0.0 0.000000
8 2 1 1 3 1 total 1.0 1.414214
9 2 1 1 4 1 total 0.0 0.000000
10 2 1 1 5 1 total 0.0 0.000000
11 2 1 1 6 1 total 0.0 0.000000
18 2 2 1 1 1 total 0.0 0.000000
19 2 2 1 2 1 total 1.0 1.414214
20 2 2 1 3 1 total 0.0 0.000000
21 2 2 1 4 1 total 1.0 1.414214
22 2 2 1 5 1 total 0.0 0.000000
23 2 2 1 6 1 total 0.0 0.000000
mesh 1 delayedgroup group in nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.000227 0.000016
1 1 1 1 2 1 total 0.001217 0.000083
2 1 1 1 3 1 total 0.001189 0.000081
3 1 1 1 4 1 total 0.002771 0.000185
4 1 1 1 5 1 total 0.001247 0.000082
5 1 1 1 6 1 total 0.000518 0.000034
12 1 2 1 1 1 total 0.000227 0.000023
13 1 2 1 2 1 total 0.001215 0.000119
14 1 2 1 3 1 total 0.001185 0.000115
15 1 2 1 4 1 total 0.002755 0.000266
16 1 2 1 5 1 total 0.001234 0.000117
17 1 2 1 6 1 total 0.000513 0.000049
6 2 1 1 1 1 total 0.000227 0.000024
7 2 1 1 2 1 total 0.001213 0.000124
8 2 1 1 3 1 total 0.001183 0.000120
9 2 1 1 4 1 total 0.002748 0.000275
10 2 1 1 5 1 total 0.001228 0.000119
11 2 1 1 6 1 total 0.000511 0.000050
18 2 2 1 1 1 total 0.000227 0.000028
19 2 2 1 2 1 total 0.001210 0.000149
20 2 2 1 3 1 total 0.001179 0.000144
21 2 2 1 4 1 total 0.002732 0.000330
22 2 2 1 5 1 total 0.001214 0.000143
23 2 2 1 6 1 total 0.000505 0.000059
mesh 1 delayedgroup group in nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.013357 0.000929
1 1 1 1 2 1 total 0.032589 0.002199
2 1 1 1 3 1 total 0.121106 0.008007
3 1 1 1 4 1 total 0.306140 0.019650
4 1 1 1 5 1 total 0.862764 0.052685
5 1 1 1 6 1 total 2.897892 0.177498
12 1 2 1 1 1 total 0.013356 0.001330
13 1 2 1 2 1 total 0.032598 0.003165
14 1 2 1 3 1 total 0.121086 0.011554
15 1 2 1 4 1 total 0.305948 0.028460
16 1 2 1 5 1 total 0.862070 0.076649
17 1 2 1 6 1 total 2.895530 0.258195
6 2 1 1 1 1 total 0.013355 0.001389
7 2 1 1 2 1 total 0.032601 0.003293
8 2 1 1 3 1 total 0.121079 0.011980
9 2 1 1 4 1 total 0.305874 0.029310
10 2 1 1 5 1 total 0.861802 0.077464
11 2 1 1 6 1 total 2.894617 0.261360
18 2 2 1 1 1 total 0.013354 0.001670
19 2 2 1 2 1 total 0.032610 0.003972
20 2 2 1 3 1 total 0.121059 0.014468
21 2 2 1 4 1 total 0.305680 0.035462
22 2 2 1 5 1 total 0.861087 0.093863
23 2 2 1 6 1 total 2.892185 0.316700
mesh 1 delayedgroup group in group out nuclide mean std. dev.
x y z
0 1 1 1 1 1 1 total 0.000000 0.000000
1 1 1 1 2 1 1 total 0.000000 0.000000
2 1 1 1 3 1 1 total 0.000000 0.000000
3 1 1 1 4 1 1 total 0.000201 0.000201
4 1 1 1 5 1 1 total 0.000000 0.000000
5 1 1 1 6 1 1 total 0.000000 0.000000
12 1 2 1 1 1 1 total 0.000000 0.000000
13 1 2 1 2 1 1 total 0.000250 0.000250
14 1 2 1 3 1 1 total 0.000000 0.000000
15 1 2 1 4 1 1 total 0.000477 0.000293
16 1 2 1 5 1 1 total 0.000000 0.000000
17 1 2 1 6 1 1 total 0.000000 0.000000
6 2 1 1 1 1 1 total 0.000000 0.000000
7 2 1 1 2 1 1 total 0.000000 0.000000
8 2 1 1 3 1 1 total 0.000220 0.000220
9 2 1 1 4 1 1 total 0.000000 0.000000
10 2 1 1 5 1 1 total 0.000000 0.000000
11 2 1 1 6 1 1 total 0.000000 0.000000
18 2 2 1 1 1 1 total 0.000000 0.000000
19 2 2 1 2 1 1 total 0.000226 0.000226
20 2 2 1 3 1 1 total 0.000000 0.000000
21 2 2 1 4 1 1 total 0.000226 0.000226
22 2 2 1 5 1 1 total 0.000000 0.000000
23 2 2 1 6 1 1 total 0.000000 0.000000

View file

@ -24,7 +24,15 @@ class MGXSTestHarness(PyAPITestHarness):
self.mgxs_lib.energy_groups = energy_groups
self.mgxs_lib.num_delayed_groups = 6
self.mgxs_lib.legendre_order = 3
self.mgxs_lib.domain_type = 'material'
self.mgxs_lib.domain_type = 'mesh'
# Instantiate a tally mesh
mesh = openmc.RegularMesh(mesh_id=1)
mesh.dimension = [2, 2]
mesh.lower_left = [-100., -100.]
mesh.width = [100., 100.]
self.mgxs_lib.domains = [mesh]
self.mgxs_lib.build_library()
# Add tallies

View file

@ -22,8 +22,10 @@ class MGXSTestHarness(PyAPITestHarness):
self.mgxs_lib = openmc.mgxs.Library(self._model.geometry)
self.mgxs_lib.by_nuclide = False
# Test all MGXS types
self.mgxs_lib.mgxs_types = openmc.mgxs.MGXS_TYPES + \
# Test all relevant MGXS types
relevant_MGXS_TYPES = [item for item in openmc.mgxs.MGXS_TYPES
if item != 'current']
self.mgxs_lib.mgxs_types = tuple(relevant_MGXS_TYPES) + \
openmc.mgxs.MDGXS_TYPES
self.mgxs_lib.energy_groups = energy_groups
self.mgxs_lib.num_delayed_groups = 6

View file

@ -50,7 +50,12 @@
</settings>
<?xml version='1.0' encoding='utf-8'?>
<tallies>
<filter id="1" type="material">
<mesh id="1">
<dimension>2 2</dimension>
<lower_left>-100.0 -100.0</lower_left>
<width>100.0 100.0</width>
</mesh>
<filter id="1" type="mesh">
<bins>1</bins>
</filter>
<filter id="2" type="energy">
@ -68,15 +73,12 @@
<filter id="52" type="energy">
<bins>0.0 20000000.0</bins>
</filter>
<filter id="65" type="delayedgroup">
<filter id="66" type="meshsurface">
<bins>1</bins>
</filter>
<filter id="69" type="delayedgroup">
<bins>1 2 3 4 5 6</bins>
</filter>
<filter id="80" type="material">
<bins>2</bins>
</filter>
<filter id="159" type="material">
<bins>3</bins>
</filter>
<tally id="1">
<filters>1 2</filters>
<nuclides>total</nuclides>
@ -384,793 +386,67 @@
<estimator>analog</estimator>
</tally>
<tally id="52">
<filters>66 2</filters>
<nuclides>total</nuclides>
<scores>current</scores>
<estimator>analog</estimator>
</tally>
<tally id="53">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="53">
<filters>1 65 2</filters>
<tally id="54">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="54">
<filters>1 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="55">
<filters>1 65 5</filters>
<filters>1 69 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="56">
<filters>1 69 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="57">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="57">
<filters>1 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="58">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="59">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<tally id="61">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="61">
<filters>1 65 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="62">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="63">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="64">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="65">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="66">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="67">
<filters>80 5 6</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="68">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="69">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="70">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="71">
<filters>80 5 6</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="72">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="73">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="74">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="75">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="76">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="77">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="78">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="79">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="80">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="81">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="82">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>kappa-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="83">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="84">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="85">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="86">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="87">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="88">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="89">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="90">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="91">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="92">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="93">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="94">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="95">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="96">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="97">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="98">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="99">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="100">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="101">
<filters>80 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="102">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="103">
<filters>80 52</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="104">
<filters>80 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="105">
<filters>80 52</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="106">
<filters>80 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="107">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="108">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>inverse-velocity</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="109">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="110">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="111">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="112">
<filters>80 2 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="113">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="114">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="115">
<filters>80 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="116">
<filters>80 65 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="117">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="118">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="119">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="120">
<filters>80 65 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="121">
<filters>80 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="122">
<filters>80 65 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="123">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="124">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="125">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="126">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="127">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="128">
<filters>159 5 6</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="129">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="130">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>total</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="131">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="132">
<filters>159 5 6</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="133">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="134">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="135">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="136">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>absorption</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="137">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="138">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="139">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="140">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="141">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="142">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="143">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>kappa-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="144">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="145">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="146">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="147">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="148">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="149">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="150">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="151">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="152">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="153">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="154">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="155">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="156">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="157">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="158">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="159">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="160">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="161">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="162">
<filters>159 2 5 28</filters>
<nuclides>total</nuclides>
<scores>scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="163">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>nu-scatter</scores>
<estimator>analog</estimator>
</tally>
<tally id="164">
<filters>159 52</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="165">
<filters>159 5</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="166">
<filters>159 52</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="167">
<filters>159 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="168">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="169">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>inverse-velocity</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="170">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="171">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="172">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="173">
<filters>159 2 5</filters>
<nuclides>total</nuclides>
<scores>prompt-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="174">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="175">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="176">
<filters>159 65 52</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="177">
<filters>159 65 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="178">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="179">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="180">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="181">
<filters>159 65 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="182">
<filters>159 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="183">
<filters>159 65 2 5</filters>
<filters>1 69 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>

View file

@ -1,366 +1,212 @@
domain=1 type=total
[4.14825464e-01 6.60169863e-01]
[2.27929104e-02 4.75189000e-02]
[5.38564635e-01 1.45554552e+00]
[2.15102394e-02 1.74671506e-01]
domain=1 type=transport
[3.63092031e-01 6.44850709e-01]
[2.38384842e-02 4.76746410e-02]
[3.10133076e-01 1.09725336e+00]
[2.65671384e-02 1.80883943e-01]
domain=1 type=nu-transport
[3.63092031e-01 6.44850709e-01]
[2.38384842e-02 4.76746410e-02]
[3.10133076e-01 1.09725336e+00]
[2.65671384e-02 1.80883943e-01]
domain=1 type=absorption
[2.74078431e-02 2.64510714e-01]
[2.69249666e-03 2.33670618e-02]
[8.45377250e-03 9.45269817e-02]
[7.33458615e-04 9.19713128e-03]
domain=1 type=capture
[1.98445482e-02 7.17193458e-02]
[2.64330389e-03 2.52078411e-02]
[6.06155218e-03 3.99297631e-02]
[7.22875857e-04 7.50886804e-03]
domain=1 type=fission
[7.56329484e-03 1.92791369e-01]
[5.08483893e-04 1.71059103e-02]
[2.39222032e-03 5.45972186e-02]
[8.69881114e-05 5.15800900e-03]
domain=1 type=nu-fission
[1.94317397e-02 4.69774728e-01]
[1.32297610e-03 4.16819717e-02]
[6.15310797e-03 1.33037043e-01]
[2.31371327e-04 1.25685205e-02]
domain=1 type=kappa-fission
[1.47456979e+06 3.72868925e+07]
[9.92353624e+04 3.30837549e+06]
[4.66497048e+05 1.05593971e+07]
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domain=1 type=scatter
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[2.06257342e-02 2.51250448e-02]
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domain=1 type=nu-scatter
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[5.26423506e-01 1.38428396e+00]
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domain=1 type=scatter matrix
[[[3.84199430e-01 5.18702806e-02 2.00688439e-02 9.47771502e-03]
[9.88930322e-04 -2.07234582e-04 -1.03366173e-04 2.34290606e-04]]
[[[5.09394630e-01 2.28431559e-01 8.87144474e-02 9.90358757e-03]
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[[9.24639842e-04 -7.67704913e-04 4.93788836e-04 -1.71497217e-04]
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[[[2.70010116e-02 6.98254837e-03 2.84649498e-03 2.23351961e-03]
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[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
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[[[3.32592286e-02 1.55923841e-02 8.46899584e-03 3.36789772e-03]
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[[9.24883397e-04 7.67907131e-04 4.93918903e-04 1.71542390e-04]
[1.52449343e-02 4.50172764e-03 1.05507486e-02 1.04381870e-02]]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[1.81243556e-01 4.54455205e-02 1.40301767e-02 1.06726205e-02]]]
domain=1 type=nu-scatter matrix
[[[3.84199430e-01 5.18702806e-02 2.00688439e-02 9.47771502e-03]
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[[[5.09394630e-01 2.28431559e-01 8.87144474e-02 9.90358757e-03]
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[[9.24639842e-04 -7.67704913e-04 4.93788836e-04 -1.71497217e-04]
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[[[2.70010116e-02 6.98254837e-03 2.84649498e-03 2.23351961e-03]
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[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
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[[[3.32592286e-02 1.55923841e-02 8.46899584e-03 3.36789772e-03]
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[[9.24883397e-04 7.67907131e-04 4.93918903e-04 1.71542390e-04]
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[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[1.81243556e-01 4.54455205e-02 1.40301767e-02 1.06726205e-02]]]
domain=1 type=multiplicity matrix
[[1.00000000e+00 1.00000000e+00]
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[[7.85164550e-02 6.87184271e-01]
[1.41421356e+00 4.11303488e-02]]
[0.00000000e+00 1.00000000e+00]]
[[7.36409657e-02 1.86006410e-01]
[0.00000000e+00 1.52524077e-01]]
domain=1 type=nu-fission matrix
[[2.01424221e-02 0.00000000e+00]
[4.54366342e-01 0.00000000e+00]]
[[3.14909051e-03 0.00000000e+00]
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[[6.38661278e-03 0.00000000e+00]
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[[1.95163368e-03 0.00000000e+00]
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domain=1 type=scatter probability matrix
[[9.97432606e-01 2.56739409e-03]
[2.24215247e-03 9.97757848e-01]]
[[7.82243018e-02 1.25560869e-03]
[2.24310192e-03 4.10531468e-02]]
[[9.67651757e-01 3.23482428e-02]
[0.00000000e+00 1.00000000e+00]]
[[7.02365009e-02 4.55825691e-03]
[0.00000000e+00 1.52524077e-01]]
domain=1 type=consistent scatter matrix
[[[3.86422967e-01 5.21704775e-02 2.01849914e-02 9.53256688e-03]
[9.94653712e-04 -2.08433942e-04 -1.03964400e-04 2.35646553e-04]]
[[[5.12962708e-01 2.30031618e-01 8.93358517e-02 9.97295769e-03]
[1.71481549e-02 5.12319869e-03 -1.30527063e-03 -2.31004289e-03]]
[[8.87128136e-04 -7.36559899e-04 4.73756321e-04 -1.64539748e-04]
[3.94772020e-01 1.58130798e-02 6.11300510e-03 -1.00731826e-02]]]
[[[3.66286904e-02 7.76748967e-03 3.13767805e-03 2.32683668e-03]
[4.89318749e-04 1.50458419e-04 1.85500930e-04 1.29783343e-04]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[1.36101853e+00 3.26698857e-01 7.08412681e-02 -1.01755864e-02]]]
[[[4.24038637e-02 1.95589805e-02 9.65642635e-03 3.42897188e-03]
[2.50979721e-03 1.05693435e-03 6.85887105e-04 7.91226772e-04]]
[[8.89289900e-04 7.38354757e-04 4.74910776e-04 1.64940700e-04]
[2.98710065e-02 4.44330993e-03 1.01307463e-02 1.00367467e-02]]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[2.66048427e-01 6.51550937e-02 1.72051955e-02 1.05966869e-02]]]
domain=1 type=consistent nu-scatter matrix
[[[3.86422967e-01 5.21704775e-02 2.01849914e-02 9.53256688e-03]
[9.94653712e-04 -2.08433942e-04 -1.03964400e-04 2.35646553e-04]]
[[[5.12962708e-01 2.30031618e-01 8.93358517e-02 9.97295769e-03]
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[[8.87128136e-04 -7.36559899e-04 4.73756321e-04 -1.64539748e-04]
[3.94772020e-01 1.58130798e-02 6.11300510e-03 -1.00731826e-02]]]
[[[4.75627021e-02 8.78140568e-03 3.51522199e-03 2.44425169e-03]
[8.40606499e-04 2.07733706e-04 1.98782933e-04 2.07523215e-04]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[1.36101853e+00 3.26698857e-01 7.08412681e-02 -1.01755864e-02]]]
[[[5.67894665e-02 2.58748694e-02 1.16844724e-02 3.50673899e-03]
[4.05870125e-03 1.42310215e-03 7.27590183e-04 9.00370534e-04]]
[[1.53780011e-03 1.27679627e-03 8.21237084e-04 2.85222881e-04]
[3.39988353e-02 4.49065920e-03 1.01338659e-02 1.00452944e-02]]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[3.37453083e-01 8.20253589e-02 2.03166620e-02 1.07097407e-02]]]
domain=1 type=chi
[1.00000000e+00 0.00000000e+00]
[4.60705491e-02 0.00000000e+00]
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domain=1 type=chi-prompt
[1.00000000e+00 0.00000000e+00]
[5.14714842e-02 0.00000000e+00]
[1.15074880e-01 0.00000000e+00]
domain=1 type=inverse-velocity
[5.70932437e-08 2.85573948e-06]
[4.68793809e-09 2.44216369e-07]
[5.82407705e-08 2.93916338e-06]
[3.57468034e-09 3.31327050e-07]
domain=1 type=prompt-nu-fission
[1.92392209e-02 4.66718979e-01]
[1.30950644e-03 4.14108425e-02]
[6.09158918e-03 1.32171675e-01]
[2.28563531e-04 1.24867659e-02]
domain=1 type=prompt-nu-fission matrix
[[2.01424221e-02 0.00000000e+00]
[4.45819054e-01 0.00000000e+00]]
[[3.14909051e-03 0.00000000e+00]
[2.86750876e-02 0.00000000e+00]]
[[6.38661278e-03 0.00000000e+00]
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[[1.95163368e-03 0.00000000e+00]
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domain=1 type=current
[[[0.00000000e+00 0.00000000e+00 3.85400000e+00 3.80400000e+00
0.00000000e+00 0.00000000e+00 3.74600000e+00 3.80200000e+00]
[0.00000000e+00 0.00000000e+00 7.12000000e-01 7.66000000e-01
0.00000000e+00 0.00000000e+00 7.78000000e-01 7.42000000e-01]]
[[3.80400000e+00 3.85400000e+00 0.00000000e+00 0.00000000e+00
0.00000000e+00 0.00000000e+00 3.70400000e+00 3.65000000e+00]
[7.66000000e-01 7.12000000e-01 0.00000000e+00 0.00000000e+00
0.00000000e+00 0.00000000e+00 7.20000000e-01 7.72000000e-01]]
[[0.00000000e+00 0.00000000e+00 3.70600000e+00 3.74600000e+00
3.80200000e+00 3.74600000e+00 0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00 7.42000000e-01 7.00000000e-01
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[[3.74600000e+00 3.70600000e+00 0.00000000e+00 0.00000000e+00
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[[[0.00000000e+00 0.00000000e+00 8.57088093e-02 5.04579032e-02
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[0.00000000e+00 0.00000000e+00 4.61952378e-02 5.35350353e-02
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[[5.04579032e-02 8.57088093e-02 0.00000000e+00 0.00000000e+00
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0.00000000e+00 0.00000000e+00 4.14728827e-02 4.66261729e-02]]
[[0.00000000e+00 0.00000000e+00 1.32838248e-01 1.90383823e-01
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3.81313519e-02 5.23832034e-02 0.00000000e+00 0.00000000e+00]]
[[1.90383823e-01 1.32838248e-01 0.00000000e+00 0.00000000e+00
8.87693641e-02 1.39089899e-01 0.00000000e+00 0.00000000e+00]
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4.66261729e-02 4.14728827e-02 0.00000000e+00 0.00000000e+00]]]
domain=1 type=delayed-nu-fission
[[4.31687649e-06 1.06974147e-04]
[2.69760050e-05 5.52167849e-04]
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[[2.89748551e-07 9.49155602e-06]
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[[1.36657452e-06 3.02943589e-05]
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[[5.09659449e-08 2.86202444e-06]
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[1.12997191e-06 3.16212248e-05]
[7.16321720e-07 1.29642809e-05]
[2.91301483e-07 5.43069083e-06]]
domain=1 type=chi-delayed
[[0.00000000e+00 0.00000000e+00]
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[1.00000000e+00 0.00000000e+00]
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[[0.00000000e+00 0.00000000e+00]
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[3.60359016e-01 0.00000000e+00]
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[0.00000000e+00 0.00000000e+00]]
domain=1 type=beta
[[2.22155945e-04 2.27713711e-04]
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[3.82159878e-03 2.51590670e-03]
[2.13520982e-03 1.03148823e-03]
[8.74939592e-04 4.32086725e-04]]
[[1.80847601e-05 2.46946655e-05]
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[7.48900063e-05 4.68581181e-05]]
[[2.22095001e-04 2.27713713e-04]
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[[9.07215649e-06 1.93631017e-05]
[6.26713584e-05 9.99464126e-05]
[6.94548765e-05 9.54175694e-05]
[1.94563984e-04 2.13934228e-04]
[1.21876271e-04 8.77101834e-05]
[4.95946084e-05 3.67414816e-05]]
domain=1 type=decay-rate
[[1.34450193e-02 1.33360001e-02]
[3.20638663e-02 3.27389978e-02]
[1.22136025e-01 1.20780007e-01]
[3.15269336e-01 3.02780066e-01]
[8.89232587e-01 8.49490287e-01]
[2.98940409e+00 2.85300088e+00]]
[[1.08439455e-03 1.44623725e-03]
[2.65795038e-03 3.55041661e-03]
[1.02955036e-02 1.30981202e-02]
[2.71748571e-02 3.28353145e-02]
[7.93682889e-02 9.21238900e-02]
[2.66253283e-01 3.09396760e-01]]
[[1.34479215e-02 1.33360001e-02]
[3.20491028e-02 3.27389978e-02]
[1.22162808e-01 1.20780007e-01]
[3.15480592e-01 3.02780066e-01]
[8.89723658e-01 8.49490289e-01]
[2.99112795e+00 2.85300089e+00]]
[[5.47700122e-04 1.13399549e-03]
[1.53954980e-03 2.78388383e-03]
[6.44048392e-03 1.02702443e-02]
[1.86178714e-02 2.57461915e-02]
[6.12200714e-02 7.22344077e-02]
[2.04036637e-01 2.42598218e-01]]
domain=1 type=delayed-nu-fission matrix
[[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[2.53814444e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[1.18579136e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[4.82335163e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]]
[[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[1.56094521e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[1.18610370e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[1.23402593e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]]
domain=2 type=total
[3.13737667e-01 3.00821380e-01]
[1.55819228e-02 2.80524816e-02]
domain=2 type=transport
[2.75508079e-01 3.12035015e-01]
[1.77418859e-02 3.23843473e-02]
domain=2 type=nu-transport
[2.75508079e-01 3.12035015e-01]
[1.77418859e-02 3.23843473e-02]
domain=2 type=absorption
[1.57499139e-03 5.40037825e-03]
[3.22547917e-04 6.18139027e-04]
domain=2 type=capture
[1.57499139e-03 5.40037825e-03]
[3.22547917e-04 6.18139027e-04]
domain=2 type=fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=nu-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=kappa-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=scatter
[3.12162675e-01 2.95421002e-01]
[1.53219435e-02 2.74455213e-02]
domain=2 type=nu-scatter
[3.10120713e-01 2.96264249e-01]
[3.37881037e-02 4.37922226e-02]
domain=2 type=scatter matrix
[[[3.10120713e-01 3.82295876e-02 2.07449405e-02 7.96429620e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[2.96264249e-01 -1.12136353e-02 8.83656566e-03 -3.27006707e-03]]]
[[[3.37881037e-02 8.48399649e-03 4.69561034e-03 3.73162234e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[4.37922226e-02 1.61803653e-02 1.15039636e-02 7.32884528e-03]]]
domain=2 type=nu-scatter matrix
[[[3.10120713e-01 3.82295876e-02 2.07449405e-02 7.96429620e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[2.96264249e-01 -1.12136353e-02 8.83656566e-03 -3.27006707e-03]]]
[[[3.37881037e-02 8.48399649e-03 4.69561034e-03 3.73162234e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[4.37922226e-02 1.61803653e-02 1.15039636e-02 7.32884528e-03]]]
domain=2 type=multiplicity matrix
[[1.00000000e+00 0.00000000e+00]
[0.00000000e+00 1.00000000e+00]]
[[1.08778697e-01 0.00000000e+00]
[0.00000000e+00 1.42427173e-01]]
domain=2 type=nu-fission matrix
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=scatter probability matrix
[[1.00000000e+00 0.00000000e+00]
[0.00000000e+00 1.00000000e+00]]
[[1.08778697e-01 0.00000000e+00]
[0.00000000e+00 1.42427173e-01]]
domain=2 type=consistent scatter matrix
[[[3.12162675e-01 3.84813069e-02 2.08815337e-02 8.01673640e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[2.95421002e-01 -1.11817183e-02 8.81141444e-03 -3.26075959e-03]]]
[[[3.72534020e-02 8.74305414e-03 4.83468236e-03 3.77642683e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[5.02358893e-02 1.61616720e-02 1.14951123e-02 7.31312479e-03]]]
domain=2 type=consistent nu-scatter matrix
[[[3.12162675e-01 3.84813069e-02 2.08815337e-02 8.01673640e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[2.95421002e-01 -1.11817183e-02 8.81141444e-03 -3.26075959e-03]]]
[[[5.04070429e-02 9.69345878e-03 5.34169556e-03 3.87580585e-03]
[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00 0.00000000e+00 0.00000000e+00]
[6.55288678e-02 1.62399493e-02 1.15634161e-02 7.32785650e-03]]]
domain=2 type=chi
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=chi-prompt
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=inverse-velocity
[5.99597928e-08 2.98549016e-06]
[4.55308451e-09 3.41701982e-07]
domain=2 type=prompt-nu-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=2 type=prompt-nu-fission matrix
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=delayed-nu-fission
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=chi-delayed
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=beta
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=decay-rate
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=2 type=delayed-nu-fission matrix
[[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[1.22628106e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
@ -377,200 +223,7 @@ domain=2 type=delayed-nu-fission matrix
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]]
domain=3 type=total
[6.64572194e-01 2.05238389e+00]
[3.12147473e-02 2.24342890e-01]
domain=3 type=transport
[2.83322749e-01 1.49973953e+00]
[3.52061127e-02 2.30902118e-01]
domain=3 type=nu-transport
[2.83322749e-01 1.49973953e+00]
[3.52061127e-02 2.30902118e-01]
domain=3 type=absorption
[6.90399488e-04 3.16872537e-02]
[4.41475703e-05 3.74655812e-03]
domain=3 type=capture
[6.90399488e-04 3.16872537e-02]
[4.41475703e-05 3.74655812e-03]
domain=3 type=fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=nu-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=kappa-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=scatter
[6.63881795e-01 2.02069663e+00]
[3.11726794e-02 2.20604438e-01]
domain=3 type=nu-scatter
[6.71269157e-01 2.03538818e+00]
[2.61863693e-02 2.58060310e-01]
domain=3 type=scatter matrix
[[[6.39901439e-01 3.81167422e-01 1.52391887e-01 9.14802163e-03]
[3.13677176e-02 8.75772258e-03 -2.56790088e-03 -3.78480261e-03]]
[[4.43343102e-04 3.99960385e-04 3.19562684e-04 2.13846954e-04]
[2.03494484e+00 5.09940476e-01 1.11174601e-01 2.49884339e-02]]]
[[[2.47091210e-02 1.62432637e-02 8.15627711e-03 3.88856186e-03]
[1.72811278e-03 9.25670435e-04 1.01398468e-03 8.17075512e-04]]
[[4.44850361e-04 4.01320154e-04 3.20649120e-04 2.14573982e-04]
[2.57799870e-01 5.12359026e-02 1.30198161e-02 8.31235196e-03]]]
domain=3 type=nu-scatter matrix
[[[6.39901439e-01 3.81167422e-01 1.52391887e-01 9.14802163e-03]
[3.13677176e-02 8.75772258e-03 -2.56790088e-03 -3.78480261e-03]]
[[4.43343102e-04 3.99960385e-04 3.19562684e-04 2.13846954e-04]
[2.03494484e+00 5.09940476e-01 1.11174601e-01 2.49884339e-02]]]
[[[2.47091210e-02 1.62432637e-02 8.15627711e-03 3.88856186e-03]
[1.72811278e-03 9.25670435e-04 1.01398468e-03 8.17075512e-04]]
[[4.44850361e-04 4.01320154e-04 3.20649120e-04 2.14573982e-04]
[2.57799870e-01 5.12359026e-02 1.30198161e-02 8.31235196e-03]]]
domain=3 type=multiplicity matrix
[[1.00000000e+00 1.00000000e+00]
[1.00000000e+00 1.00000000e+00]]
[[3.86091908e-02 6.76673480e-02]
[1.41421356e+00 1.35929207e-01]]
domain=3 type=nu-fission matrix
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=scatter probability matrix
[[9.53271028e-01 4.67289720e-02]
[2.17817469e-04 9.99782183e-01]]
[[3.60184962e-02 2.54736726e-03]
[2.18820864e-04 1.35884974e-01]]
domain=3 type=consistent scatter matrix
[[[6.32859281e-01 3.76972649e-01 1.50714804e-01 9.04734705e-03]
[3.10225138e-02 8.66134326e-03 -2.53964096e-03 -3.74315061e-03]]
[[4.40143026e-04 3.97073448e-04 3.17256062e-04 2.12303394e-04]
[2.02025649e+00 5.06259696e-01 1.10372136e-01 2.48080660e-02]]]
[[[3.81421848e-02 2.37145043e-02 1.06635009e-02 3.86848985e-03]
[2.23201039e-03 9.99377011e-04 1.00968851e-03 8.26439590e-04]]
[[4.44773843e-04 4.01251123e-04 3.20593966e-04 2.14537073e-04]
[3.52193929e-01 7.91402819e-02 1.84875925e-02 8.77085752e-03]]]
domain=3 type=consistent nu-scatter matrix
[[[6.32859281e-01 3.76972649e-01 1.50714804e-01 9.04734705e-03]
[3.10225138e-02 8.66134326e-03 -2.53964096e-03 -3.74315061e-03]]
[[4.40143026e-04 3.97073448e-04 3.17256062e-04 2.12303394e-04]
[2.02025649e+00 5.06259696e-01 1.10372136e-01 2.48080660e-02]]]
[[[4.52974133e-02 2.78247077e-02 1.21478698e-02 3.88422859e-03]
[3.06407542e-03 1.15855774e-03 1.02420876e-03 8.64382873e-04]]
[[7.65033031e-04 6.90171798e-04 5.51437493e-04 3.69014387e-04]
[4.46600759e-01 1.04874946e-01 2.38091367e-02 9.39676938e-03]]]
domain=3 type=chi
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=chi-prompt
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=inverse-velocity
[6.02207835e-08 3.04495548e-06]
[3.78043705e-09 3.60007679e-07]
domain=3 type=prompt-nu-fission
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
domain=3 type=prompt-nu-fission matrix
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=delayed-nu-fission
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=chi-delayed
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=beta
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=decay-rate
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
domain=3 type=delayed-nu-fission matrix
[[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]]
[[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]
[1.22965527e-03 0.00000000e+00]]
[[0.00000000e+00 0.00000000e+00]
[0.00000000e+00 0.00000000e+00]]

View file

@ -28,7 +28,15 @@ class MGXSTestHarness(PyAPITestHarness):
self.mgxs_lib.energy_groups = energy_groups
self.mgxs_lib.num_delayed_groups = 6
self.mgxs_lib.legendre_order = 3
self.mgxs_lib.domain_type = 'material'
self.mgxs_lib.domain_type = 'mesh'
# Instantiate a tally mesh
mesh = openmc.RegularMesh(mesh_id=1)
mesh.dimension = [2, 2]
mesh.lower_left = [-100., -100.]
mesh.width = [100., 100.]
self.mgxs_lib.domains = [mesh]
self.mgxs_lib.build_library()
# Add tallies
@ -54,8 +62,8 @@ class MGXSTestHarness(PyAPITestHarness):
for domain in self.mgxs_lib.domains:
for mgxs_type in self.mgxs_lib.mgxs_types:
outstr += 'domain={0} type={1}\n'.format(domain.id, mgxs_type)
avg_key = 'material/{0}/{1}/average'.format(domain.id, mgxs_type)
std_key = 'material/{0}/{1}/std. dev.'.format(domain.id, mgxs_type)
avg_key = 'mesh/{}/{}/average'.format(domain.id, mgxs_type)
std_key = 'mesh/{}/{}/std. dev.'.format(domain.id, mgxs_type)
outstr += '{}\n{}\n'.format(f[avg_key][...], f[std_key][...])
# Hash the results if necessary

View file

@ -53,7 +53,10 @@
<filter id="28" type="legendre">
<order>3</order>
</filter>
<filter id="65" type="delayedgroup">
<filter id="66" type="meshsurface">
<bins>1</bins>
</filter>
<filter id="69" type="delayedgroup">
<bins>1 2 3 4 5 6</bins>
</filter>
<tally id="1">
@ -363,61 +366,67 @@
<estimator>analog</estimator>
</tally>
<tally id="52">
<filters>66 2</filters>
<nuclides>total</nuclides>
<scores>current</scores>
<estimator>analog</estimator>
</tally>
<tally id="53">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="53">
<filters>1 65 2</filters>
<tally id="54">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="54">
<filters>1 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="55">
<filters>1 65 5</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="56">
<filters>1 69 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>
</tally>
<tally id="57">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="57">
<filters>1 65 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="58">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="59">
<filters>1 65 2</filters>
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<filters>1 69 2</filters>
<nuclides>total</nuclides>
<scores>decay-rate</scores>
<estimator>tracklength</estimator>
</tally>
<tally id="60">
<tally id="61">
<filters>1 2</filters>
<nuclides>total</nuclides>
<scores>flux</scores>
<estimator>analog</estimator>
</tally>
<tally id="61">
<filters>1 65 2 5</filters>
<tally id="62">
<filters>1 69 2 5</filters>
<nuclides>total</nuclides>
<scores>delayed-nu-fission</scores>
<estimator>analog</estimator>

View file

@ -178,6 +178,40 @@
2 1 2 1 1 1 total 0.032188 0.002420
1 2 1 1 1 1 total 0.032304 0.002073
3 2 2 1 1 1 total 0.031336 0.001614
mesh 1 group in nuclide mean std. dev.
x y surf
3 1 1 x-max in 1 total 0.1892 0.011302
2 1 1 x-max out 1 total 0.2738 0.093735
1 1 1 x-min in 1 total 0.0000 0.000000
0 1 1 x-min out 1 total 0.0000 0.000000
7 1 1 y-max in 1 total 0.1724 0.009114
6 1 1 y-max out 1 total 0.2358 0.041204
5 1 1 y-min in 1 total 0.0000 0.000000
4 1 1 y-min out 1 total 0.0000 0.000000
19 1 2 x-max in 1 total 0.1822 0.011922
18 1 2 x-max out 1 total 0.1778 0.010514
17 1 2 x-min in 1 total 0.0000 0.000000
16 1 2 x-min out 1 total 0.0000 0.000000
23 1 2 y-max in 1 total 0.0000 0.000000
22 1 2 y-max out 1 total 0.0000 0.000000
21 1 2 y-min in 1 total 0.2358 0.041204
20 1 2 y-min out 1 total 0.1724 0.009114
11 2 1 x-max in 1 total 0.0000 0.000000
10 2 1 x-max out 1 total 0.0000 0.000000
9 2 1 x-min in 1 total 0.2738 0.093735
8 2 1 x-min out 1 total 0.1892 0.011302
15 2 1 y-max in 1 total 0.1894 0.012331
14 2 1 y-max out 1 total 0.2290 0.038756
13 2 1 y-min in 1 total 0.0000 0.000000
12 2 1 y-min out 1 total 0.0000 0.000000
27 2 2 x-max in 1 total 0.0000 0.000000
26 2 2 x-max out 1 total 0.0244 0.024400
25 2 2 x-min in 1 total 0.1778 0.010514
24 2 2 x-min out 1 total 0.1822 0.011922
31 2 2 y-max in 1 total 0.0000 0.000000
30 2 2 y-max out 1 total 0.0236 0.023600
29 2 2 y-min in 1 total 0.2290 0.038756
28 2 2 y-min out 1 total 0.1894 0.012331
mesh 1 delayedgroup group in nuclide mean std. dev.
x y z
0 1 1 1 1 1 total 0.000007 4.734745e-07

View file

@ -19,8 +19,10 @@ class MGXSTestHarness(PyAPITestHarness):
self.mgxs_lib = openmc.mgxs.Library(self._model.geometry)
self.mgxs_lib.by_nuclide = False
# Test all MGXS types
self.mgxs_lib.mgxs_types = openmc.mgxs.MGXS_TYPES + \
# Test all relevant MGXS types
relevant_MGXS_TYPES = [item for item in openmc.mgxs.MGXS_TYPES
if item != 'current']
self.mgxs_lib.mgxs_types = tuple(relevant_MGXS_TYPES) + \
openmc.mgxs.MDGXS_TYPES
self.mgxs_lib.energy_groups = energy_groups
self.mgxs_lib.num_delayed_groups = 6

View file

@ -17,8 +17,11 @@ class MGXSTestHarness(PyAPITestHarness):
# Initialize MGXS Library for a few cross section types
self.mgxs_lib = openmc.mgxs.Library(self._model.geometry)
self.mgxs_lib.by_nuclide = True
# Test all MGXS types
self.mgxs_lib.mgxs_types = openmc.mgxs.MGXS_TYPES
# Test relevant all MGXS types
relevant_MGXS_TYPES = [item for item in openmc.mgxs.MGXS_TYPES
if item != 'current']
self.mgxs_lib.mgxs_types = tuple(relevant_MGXS_TYPES)
self.mgxs_lib.energy_groups = energy_groups
self.mgxs_lib.legendre_order = 3
self.mgxs_lib.domain_type = 'material'