OpenMC/tests/unit_tests/test_deplete_continue.py

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"""Unit tests for openmc.deplete continue run capability.
These tests run in two steps: first a normal run and then a continue run using the previous results
"""
import pytest
import numpy as np
import openmc.deplete
from tests import dummy_operator
def test_continue(run_in_tmpdir):
"""Test to ensure that a properly defined continue run works"""
# set up the problem
bundle = dummy_operator.SCHEMES['predictor']
operator = dummy_operator.DummyOperator()
# initial depletion
bundle.solver(operator, [1.0, 2.0], [1.0, 2.0]).integrate(write_rates=True)
# set up continue run
prev_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
operator = dummy_operator.DummyOperator(prev_res)
# if continue run happens, test passes
bundle.solver(operator, [1.0, 2.0, 3.0, 4.0], [1.0, 2.0, 3.0, 4.0],
continue_timesteps=True).integrate(write_rates=True)
final_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
assert np.array_equal(
np.diff(final_res.get_times(time_units="s")),
[1.0, 2.0, 3.0, 4.0]
)
def test_continue_continue(run_in_tmpdir):
"""Test to ensure that a continue run can be continued"""
# set up the problem
bundle = dummy_operator.SCHEMES['predictor']
operator = dummy_operator.DummyOperator()
# initial depletion
bundle.solver(operator, [1.0, 2.0], [1.0, 2.0]).integrate(write_rates=True)
# set up continue run
prev_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
operator = dummy_operator.DummyOperator(prev_res)
# first continue run
bundle.solver(operator, [1.0, 2.0, 3.0, 4.0], [1.0, 2.0, 3.0, 4.0],
continue_timesteps=True).integrate(write_rates=True)
prev_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
# second continue run
bundle.solver(operator, [1.0, 2.0, 3.0, 4.0, 5.0, 6.0], [1.0, 2.0, 3.0, 4.0, 5.0, 6.0],
continue_timesteps=True).integrate()
final_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
assert np.array_equal(
np.diff(final_res.get_times(time_units="s")),
[1.0, 2.0, 3.0, 4.0, 5.0, 6.0]
)
def test_mismatched_initial_times(run_in_tmpdir):
"""Test to ensure that a continue run with different initial steps is properly caught"""
# set up the problem
bundle = dummy_operator.SCHEMES['predictor']
operator = dummy_operator.DummyOperator()
# perform initial steps
bundle.solver(operator, [0.75, 0.75], [1.0, 1.0]).integrate()
# restart
prev_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
operator = dummy_operator.DummyOperator(prev_res)
with pytest.raises(
ValueError,
match="You are attempting to continue a run in which the previous timesteps "
"do not have the same initial timesteps as those provided to the "
"Integrator. Please make sure you are using the correct timesteps.",
):
bundle.solver(
operator, [0.75, 0.5, 0.75], [1.0, 1.0, 1.0], continue_timesteps=True
).integrate()
def test_mismatched_initial_source_rates(run_in_tmpdir):
"""Test to ensure that a continue run with different initial steps is properly caught"""
# set up the problem
bundle = dummy_operator.SCHEMES['predictor']
operator = dummy_operator.DummyOperator()
# perform initial steps
bundle.solver(operator, [0.75, 0.75], [1.0, 1.0]).integrate()
# restart
prev_res = openmc.deplete.Results(operator.output_dir / "depletion_results.h5")
operator = dummy_operator.DummyOperator(prev_res)
with pytest.raises(
ValueError,
match="You are attempting to continue a run in which the previous results "
"do not have the same initial source rates, powers, or power densities "
"as those provided to the Integrator. Please make sure you are using "
"the correct powers, power densities, or source rates and previous results file.",
):
bundle.solver(
operator, [0.75, 0.75, 0.75], [1.0, 2.0, 1.0], continue_timesteps=True
).integrate()