补充pn2pipefr候选流量诊断
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@@ -6,6 +6,7 @@ from math import log10, pi, sqrt
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from PythonModels.components.amesim_pneumatic import (
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HELIUM_PNEUMATIC_GAS,
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AmesimPneumaticGas,
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compressible_orifice_mass_flow,
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diameter_mm_to_area_m2,
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)
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from PythonModels.core.base import AlgebraicComponent, DynamicComponent
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@@ -60,6 +61,61 @@ class _DarcyPipeResistanceMixin:
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upper = middle
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return 0.5 * (lower + upper)
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def pn2pipefr_mass_flow(
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self,
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*,
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port_1_pressure_pa: float,
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port_1_temperature_k: float,
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port_2_pressure_pa: float,
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port_2_temperature_k: float,
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length: float | None = None,
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) -> float:
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pressure_difference = port_1_pressure_pa - port_2_pressure_pa
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if pressure_difference == 0.0:
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return 0.0
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upstream_pressure = max(port_1_pressure_pa, port_2_pressure_pa)
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downstream_pressure = min(port_1_pressure_pa, port_2_pressure_pa)
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upstream_temperature = (
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port_1_temperature_k
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if pressure_difference > 0.0
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else port_2_temperature_k
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)
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resistance_length = self.length if length is None else length
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if resistance_length <= 0.0:
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raise ValueError("length must be positive")
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def target_flow(mass_flow_kg_s: float) -> float:
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reynolds = self._reynolds_number(mass_flow_kg_s, upstream_temperature)
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friction_factor = self._friction_factor(reynolds)
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flow_coefficient = sqrt(
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self.diameter / (resistance_length * friction_factor)
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)
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return compressible_orifice_mass_flow(
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upstream_pressure=upstream_pressure,
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downstream_pressure=downstream_pressure,
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upstream_temperature=upstream_temperature,
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area=self.area,
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flow_coefficient=flow_coefficient,
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gas=self.gas,
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)
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flow_coefficient = sqrt(self.diameter / (resistance_length * 0.02))
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magnitude = compressible_orifice_mass_flow(
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upstream_pressure=upstream_pressure,
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downstream_pressure=downstream_pressure,
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upstream_temperature=upstream_temperature,
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area=self.area,
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flow_coefficient=flow_coefficient,
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gas=self.gas,
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)
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for _ in range(12):
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next_magnitude = target_flow(magnitude)
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if abs(next_magnitude - magnitude) <= max(1.0e-12, abs(magnitude) * 1.0e-9):
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magnitude = next_magnitude
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break
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magnitude = 0.5 * (magnitude + next_magnitude)
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return magnitude if pressure_difference > 0.0 else -magnitude
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def _darcy_pressure_drop(
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self,
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mass_flow_kg_s: float,
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