Files
SystemSimulationApp/tests/test_test_mql_closure.py
T

139 lines
4.6 KiB
Python

from __future__ import annotations
import unittest
from app.simulation.examples.test_mql.primitives.pneumatic import (
AmesimPneumaticOrifice,
AmesimPneumaticVolume,
)
from app.simulation.examples.test_mql.closure import (
TestMqlPneumaticBranchComponents,
TestMqlPneumaticClosure,
)
class TestMqlPneumaticClosureTests(unittest.TestCase):
def _make_closure(
self,
*,
upstream_pressure: float = 15.3e6,
downstream_pressure: float = 1.0e5,
) -> TestMqlPneumaticClosure:
upstream = AmesimPneumaticVolume.from_liters(
name="source_chamber",
volume_liters=57.0,
p0=upstream_pressure,
T0=293.15,
)
downstream = AmesimPneumaticVolume.from_liters(
name="target_chamber",
volume_liters=15.0,
p0=downstream_pressure,
T0=293.15,
)
orifice = AmesimPneumaticOrifice.from_mm2(
name="branch_orifice",
area_mm2=78.5,
flow_coefficient=0.9,
)
def initial_state_vector() -> list[float]:
return [*upstream.get_state_vector(), *downstream.get_state_vector()]
def apply_state_vector(values: list[float]) -> None:
if len(values) != 4:
raise ValueError("two-volume closure state vector requires four values")
upstream.set_state_vector(values[:2])
downstream.set_state_vector(values[2:])
return TestMqlPneumaticClosure(
components=TestMqlPneumaticBranchComponents(
name="source_to_target",
upstream_volume=upstream,
orifice=orifice,
downstream_volume=downstream,
),
initial_state_vector=initial_state_vector,
apply_state_vector=apply_state_vector,
)
def test_snapshot_writes_modelica_style_port_flow_signs(self) -> None:
closure = self._make_closure()
snapshot = closure.snapshot()
self.assertGreater(snapshot.flow, 0.0)
self.assertAlmostEqual(
closure.components.upstream_volume.port_a.m_flow,
-snapshot.flow,
)
self.assertAlmostEqual(
closure.components.orifice.port_a.m_flow,
snapshot.flow,
)
self.assertAlmostEqual(
closure.components.orifice.port_b.m_flow,
-snapshot.flow,
)
self.assertAlmostEqual(
closure.components.downstream_volume.port_a.m_flow,
snapshot.flow,
)
self.assertAlmostEqual(
closure.components.orifice.port_a.p,
snapshot.upstream.p,
)
self.assertAlmostEqual(
closure.components.orifice.port_b.p,
snapshot.downstream.p,
)
def test_rhs_uses_canonical_flow_for_volume_mass_balance(self) -> None:
closure = self._make_closure()
state = closure.initial_state_vector()
snapshot = closure.snapshot(state)
rhs = closure.rhs(state)
self.assertEqual(len(rhs), 4)
self.assertAlmostEqual(rhs[0], -snapshot.flow)
self.assertAlmostEqual(rhs[2], snapshot.flow)
self.assertAlmostEqual(rhs[0] + rhs[2], 0.0)
self.assertAlmostEqual(rhs[1], -snapshot.flow * snapshot.upstream.h)
self.assertAlmostEqual(rhs[3], snapshot.flow * snapshot.upstream.h)
def test_reverse_pressure_reverses_canonical_flow_and_port_signs(self) -> None:
closure = self._make_closure(
upstream_pressure=1.0e5,
downstream_pressure=15.3e6,
)
snapshot = closure.snapshot()
rhs = closure.rhs(closure.initial_state_vector())
self.assertLess(snapshot.flow, 0.0)
self.assertGreater(closure.components.upstream_volume.port_a.m_flow, 0.0)
self.assertLess(closure.components.downstream_volume.port_a.m_flow, 0.0)
self.assertAlmostEqual(rhs[0], -snapshot.flow)
self.assertAlmostEqual(rhs[2], snapshot.flow)
self.assertAlmostEqual(rhs[0] + rhs[2], 0.0)
self.assertAlmostEqual(rhs[1], -snapshot.flow * snapshot.downstream.h)
self.assertAlmostEqual(rhs[3], snapshot.flow * snapshot.downstream.h)
def test_snapshot_can_apply_explicit_state_vector(self) -> None:
closure = self._make_closure()
state = closure.initial_state_vector()
state[0] *= 0.99
snapshot = closure.snapshot(state)
self.assertAlmostEqual(
closure.components.upstream_volume.state.m,
state[0],
)
self.assertGreater(snapshot.upstream.p, snapshot.downstream.p)
if __name__ == "__main__":
unittest.main()