282 lines
5.1 KiB
C++
282 lines
5.1 KiB
C++
inline int Param_NSSolver::GetIntervalStepForce() const
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{
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return intervalStepForce;
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}
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inline RDouble Param_NSSolver::GetWallTemperature() const
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{
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return wallTemperature;
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}
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inline int Param_NSSolver::GetChemicalFlag() const
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{
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return nChemical;
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}
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inline int Param_NSSolver::GetWallMultiTemperature() const
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{
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return wallMultiTemperature;
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}
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inline int Param_NSSolver::GetNSEquationNumber() const
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{
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return nNSEquation;
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}
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inline int Param_NSSolver::GetLaminarNumber() const
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{
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return nLaminar;
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}
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inline int Param_NSSolver::GetnEquation() const
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{
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return nEquation;
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}
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inline int Param_NSSolver::GetTemperatureModel() const
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{
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return nTemperatureModel;
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}
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inline RDouble Param_NSSolver::GetPreconCoefficient() const
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{
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return kPreconCoeff;
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}
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inline int Param_NSSolver::GetPreconFarFieldBCMethod() const
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{
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return preconFarfieldBCMethod;
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}
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inline int Param_NSSolver::GetIfIdealGasState() const
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{
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return nIdealState;
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}
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inline RDouble Param_NSSolver::GetReferenceDimensionalVelocity() const
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{
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return refDimensionalVelocity;
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}
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inline RDouble Param_NSSolver::GetAoA() const
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{
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return AoA;
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}
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inline int Param_NSSolver::GetRoeEntropyFixMethod() const
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{
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return roeEntropyFixMethod;
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}
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inline RDouble Param_NSSolver::GetRoeEntropyScale() const
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{
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return roeEntropyScale;
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}
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inline RDouble Param_NSSolver::GetRoeEntropyFixCoef1() const
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{
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return RoeEntropyFixCoef1;
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}
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inline RDouble Param_NSSolver::GetRoeEntropyFixCoef2() const
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{
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return RoeEntropyFixCoef2;
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}
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inline RDouble Param_NSSolver::GetAngleOfSlide () const
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{
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return angleSlide;
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}
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inline RDouble Param_NSSolver::GetPrandtlLaminar() const
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{
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return prandtlLaminar;
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}
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inline RDouble Param_NSSolver::GetPrandtlTurbulence() const
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{
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return prandtlTurbulence;
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}
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inline RDouble Param_NSSolver::GetoPrandtlLaminar() const
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{
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return oPrandtlLaminar;
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}
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inline RDouble Param_NSSolver::GetoPrandtlTurbulence() const
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{
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return oPrandtlTurbulence;
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}
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inline int Param_NSSolver::GetNChemicalRadius() const
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{
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return nChemicalRadius;
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}
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inline int Param_NSSolver::GetNChemicalSource() const
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{
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return nChemicalSource;
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}
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inline int Param_NSSolver::GetTimeIntegration() const
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{
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return timeIntegration;
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}
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inline RDouble Param_NSSolver::GetNonDimensionalSutherlandTemperature() const
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{
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return nonDimensionalSutherlandTemperature;
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}
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inline int Param_NSSolver::GetMgProlongationType() const
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{
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return mgProlongationType;
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}
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inline RDouble* Param_NSSolver::GetPrimitiveVarFarfield() const
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{
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return primitiveVarFarfield;
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}
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inline RDouble* Param_NSSolver::GetFullyCatalyticMassFraction() const
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{
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return catalyticMassFraction;
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}
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inline int Param_NSSolver::GetNumberOfSpecies() const
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{
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return numberOfSpecies;
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}
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inline int Param_NSSolver::GetIndexOfNitrogen() const
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{
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//! The index of Nitrogen in the array of species, it indicates the species with the maximum mass fraction.
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return indexOfNitrogen;
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}
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inline int Param_NSSolver::GetIndexOfElectron() const
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{
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//! The index of Electron in the array of species.
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return indexOfElectron;
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}
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inline int Param_NSSolver::GetnDensityModify() const
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{
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return nDensityModify;
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}
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inline int Param_NSSolver::GetnDebug() const
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{
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return nDebug;
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}
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inline int Param_NSSolver::GetmTT() const
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{
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return mTT;
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}
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inline int Param_NSSolver::GetmTV() const
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{
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return mTV;
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}
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inline int Param_NSSolver::GetmTE() const
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{
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return mTE;
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}
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inline int Param_NSSolver::GetnEnergyRecycle() const
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{
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return nEnergyRecycle;
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}
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inline int Param_NSSolver::GetTransitionType() const
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{
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return transitionType;
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}
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inline int Param_NSSolver::GetnViscosityFluxSublevelModified() const
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{
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return nViscosityFluxSublevelModified;
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}
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inline int Param_NSSolver::GetFlagOfEquilibriumGas() const
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{
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return nEquilibriumGas;
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}
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inline int Param_NSSolver::GetThermoEnergyModelFlag() const
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{
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return nTEnergyModel;
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}
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inline int Param_NSSolver::GetnTurblenceForChemical() const
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{
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return nTurblenceForChemical;
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}
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inline RDouble Param_NSSolver::GetDensityMin() const
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{
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return densityMin;
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}
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inline RDouble Param_NSSolver::GetdensityMinFactor() const
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{
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return densityMinFactor;
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}
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inline int Param_NSSolver::GetnGradPrimtiveMethod() const
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{
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return nGradPrimtiveMethod;
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}
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inline int Param_NSSolver::GetnInviscidFluxModify() const
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{
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return nInviscidFluxModify;
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}
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inline int Param_NSSolver::GetSelfAdaptionSolveFlag() const
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{
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return isSelfAdaptionSolve;
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}
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inline int Param_NSSolver::GetnQlLimitMethod() const
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{
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return nQlLimitMethod;
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}
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inline int Param_NSSolver::GetSurfaceGradientMethod() const
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{
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return nSurfGradMethod;
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}
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inline int Param_NSSolver:: GetRapidFlowfieldMethod() const
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{
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return nRapidFlowfield;
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}
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inline int Param_NSSolver::GetSurfaceHeatingMonitor() const
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{
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return nSurfHeatMonitor;
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}
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inline int Param_NSSolver::GetInitialPressureSteps() const
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{
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return nInitPressureStep;
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}
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inline int Param_NSSolver::GetLocalCFLFlag() const
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{
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return isUseLocalCFL;
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}
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inline RDouble Param_NSSolver::GetCharacteristicLength() const
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{
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return knLength;
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}
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inline int Param_NSSolver::GetNonequilibriumConditionFlag() const
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{
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return isUseNoneqCond;
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} |