347 lines
9.0 KiB
C++
347 lines
9.0 KiB
C++
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration |
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\\ / A nd | Copyright (C) 2011-2016 OpenFOAM Foundation
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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OpenFOAM is free software: you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
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Class
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Foam::phaseModel
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SourceFiles
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phaseModel.C
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\*---------------------------------------------------------------------------*/
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#ifndef phaseModel_H
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#define phaseModel_H
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#include "dictionary.H"
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#include "dimensionedScalar.H"
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#include "volFields.H"
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#include "surfaceFields.H"
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#include "transportModel.H"
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#include "rhoThermo.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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namespace Foam
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{
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// Forward declarations
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class twoPhaseSystem;
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class diameterModel;
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template<class Phase>
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class PhaseCompressibleTurbulenceModel;
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/*---------------------------------------------------------------------------*\
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Class phaseModel Declaration
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\*---------------------------------------------------------------------------*/
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class phaseModel
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:
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public volScalarField,
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public transportModel
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{
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// Private data
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//- Reference to the twoPhaseSystem to which this phase belongs
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const twoPhaseSystem& fluid_;
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//- Name of phase
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word name_;
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dictionary phaseDict_;
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//- Return the residual phase-fraction for given phase
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// Used to stabilize the phase momentum as the phase-fraction -> 0
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dimensionedScalar residualAlpha_;
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//- Optional maximum phase-fraction (e.g. packing limit)
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scalar alphaMax_;
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//- Thermophysical properties
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autoPtr<rhoThermo> thermo_;
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//- Velocity
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volVectorField U_;
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//- Volumetric flux of the phase
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surfaceScalarField alphaPhi_;
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//- Mass flux of the phase
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surfaceScalarField alphaRhoPhi_;
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//- Volumetric flux of the phase
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autoPtr<surfaceScalarField> phiPtr_;
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//- Diameter model
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autoPtr<diameterModel> dPtr_;
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//- Turbulence model
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autoPtr<PhaseCompressibleTurbulenceModel<phaseModel>> turbulence_;
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public:
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// Constructors
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phaseModel
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(
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const twoPhaseSystem& fluid,
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const dictionary& phaseProperties,
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const word& phaseName
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);
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//- Destructor
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virtual ~phaseModel();
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// Member Functions
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//- Return the name of this phase
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const word& name() const
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{
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return name_;
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}
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//- Return the twoPhaseSystem to which this phase belongs
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const twoPhaseSystem& fluid() const
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{
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return fluid_;
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}
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//- Return the other phase in this two-phase system
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const phaseModel& otherPhase() const;
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//- Return the residual phase-fraction for given phase
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// Used to stabilize the phase momentum as the phase-fraction -> 0
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const dimensionedScalar& residualAlpha() const
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{
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return residualAlpha_;
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}
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//- Optional maximum phase-fraction (e.g. packing limit)
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// Defaults to 1
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scalar alphaMax() const
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{
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return alphaMax_;
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}
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//- Return the Sauter-mean diameter
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tmp<volScalarField> d() const;
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//- Return the turbulence model
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const PhaseCompressibleTurbulenceModel<phaseModel>&
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turbulence() const;
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//- Return non-const access to the turbulence model
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// for correction
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PhaseCompressibleTurbulenceModel<phaseModel>&
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turbulence();
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//- Return the thermophysical model
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const rhoThermo& thermo() const
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{
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return thermo_();
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}
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//- Return non-const access to the thermophysical model
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// for correction
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rhoThermo& thermo()
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{
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return thermo_();
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}
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//- Return the laminar viscosity
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tmp<volScalarField> nu() const
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{
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return thermo_->nu();
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}
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//- Return the laminar viscosity for patch
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tmp<scalarField> nu(const label patchi) const
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{
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return thermo_->nu(patchi);
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}
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//- Return the laminar dynamic viscosity
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tmp<volScalarField> mu() const
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{
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return thermo_->mu();
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}
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//- Return the laminar dynamic viscosity for patch
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tmp<scalarField> mu(const label patchi) const
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{
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return thermo_->mu(patchi);
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}
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//- Return the thermal conductivity on a patch
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tmp<scalarField> kappa(const label patchi) const
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{
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return thermo_->kappa(patchi);
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}
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//- Return the thermal conductivity
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tmp<volScalarField> kappa() const
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{
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return thermo_->kappa();
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}
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//- Return the laminar thermal conductivity
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tmp<volScalarField> kappaEff
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(
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const volScalarField& alphat
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) const
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{
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return thermo_->kappaEff(alphat);
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}
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//- Return the laminar thermal conductivity on a patch
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tmp<scalarField> kappaEff
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(
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const scalarField& alphat,
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const label patchi
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) const
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{
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return thermo_->kappaEff(alphat, patchi);
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}
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//- Return the laminar thermal diffusivity for enthalpy
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tmp<volScalarField> alpha() const
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{
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return thermo_->alpha();
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}
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//- Return the laminar thermal diffusivity for enthalpy on a patch
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tmp<scalarField> alpha(const label patchi) const
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{
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return thermo_->alpha(patchi);
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}
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//- Return the effective thermal diffusivity for enthalpy
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tmp<volScalarField> alphaEff
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(
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const volScalarField& alphat
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) const
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{
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return thermo_->alphaEff(alphat);
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}
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//- Return the effective thermal diffusivity for enthalpy on a patch
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tmp<scalarField> alphaEff
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(
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const scalarField& alphat,
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const label patchi
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) const
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{
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return thermo_->alphaEff(alphat, patchi);
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}
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//- Return the specific heat capacity
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tmp<volScalarField> Cp() const
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{
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return thermo_->Cp();
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}
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//- Return the density
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const volScalarField& rho() const
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{
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return thermo_->rho();
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}
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//- Return the velocity
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const volVectorField& U() const
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{
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return U_;
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}
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//- Return non-const access to the velocity
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// Used in the momentum equation
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volVectorField& U()
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{
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return U_;
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}
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//- Return the volumetric flux
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const surfaceScalarField& phi() const
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{
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return phiPtr_();
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}
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//- Return non-const access to the volumetric flux
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surfaceScalarField& phi()
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{
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return phiPtr_();
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}
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//- Return the volumetric flux of the phase
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const surfaceScalarField& alphaPhi() const
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{
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return alphaPhi_;
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}
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//- Return non-const access to the volumetric flux of the phase
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surfaceScalarField& alphaPhi()
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{
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return alphaPhi_;
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}
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//- Return the mass flux of the phase
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const surfaceScalarField& alphaRhoPhi() const
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{
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return alphaRhoPhi_;
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}
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//- Return non-const access to the mass flux of the phase
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surfaceScalarField& alphaRhoPhi()
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{
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return alphaRhoPhi_;
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}
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//- Correct the phase properties
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// other than the thermodynamics and turbulence
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// which have special treatment
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void correct();
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//- Read phaseProperties dictionary
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virtual bool read(const dictionary& phaseProperties);
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//- Dummy Read for transportModel
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virtual bool read()
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{
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return true;
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}
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};
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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} // End namespace Foam
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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#endif
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// ************************************************************************* //
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