mirror of
https://develop.openfoam.com/Development/openfoam.git
synced 2025-11-28 03:28:01 +00:00
minor clean-up
This commit is contained in:
@ -63,7 +63,7 @@ int main(int argc, char *argv[])
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if (!mesh.write())
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{
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FatalErrorIn(args.executable())
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<< "Failed writing moleculeCloud."
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<< "Failed writing dsmcCloud."
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<< nl << exit(FatalError);
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}
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@ -128,7 +128,7 @@ void Foam::DsmcCloud<ParcelType>::initialise
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label typeId(findIndex(typeIdList_, moleculeName));
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if(typeId == -1)
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if (typeId == -1)
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{
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FatalErrorIn("Foam::DsmcCloud<ParcelType>::initialise")
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<< "typeId " << moleculeName << "not defined." << nl
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@ -274,7 +274,8 @@ void Foam::DsmcCloud<ParcelType>::collisions()
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scalar sigmaTcRMax = sigmaTcRMax_[celli];
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scalar selectedPairs = collisionSelectionRemainder_[celli]
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scalar selectedPairs =
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collisionSelectionRemainder_[celli]
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+ 0.5*nC*(nC-1)*nParticle_*sigmaTcRMax*deltaT
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/mesh_.cellVolumes()[celli];
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@ -284,13 +285,13 @@ void Foam::DsmcCloud<ParcelType>::collisions()
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collisionCandidates += nCandidates;
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for(label c = 0; c < nCandidates; c++)
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for (label c = 0; c < nCandidates; c++)
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{
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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// subCell candidate selection procedure
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// Select the first collision candidate
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label candidateP = rndGen_.integer(0, nC-1);
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label candidateP = rndGen_.integer(0, nC - 1);
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// Declare the second collision candidate
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label candidateQ = -1;
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@ -307,7 +308,7 @@ void Foam::DsmcCloud<ParcelType>::collisions()
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do
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{
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candidateQ = subCellPs[rndGen_.integer(0, nSC-1)];
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candidateQ = subCellPs[rndGen_.integer(0, nSC - 1)];
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} while(candidateP == candidateQ);
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}
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@ -319,7 +320,7 @@ void Foam::DsmcCloud<ParcelType>::collisions()
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do
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{
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candidateQ = rndGen_.integer(0, nC-1);
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candidateQ = rndGen_.integer(0, nC - 1);
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} while(candidateP == candidateQ);
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}
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@ -705,7 +706,7 @@ void Foam::DsmcCloud<ParcelType>::evolve()
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if (debug)
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{
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this->dumpParticlePositions();
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this->dumpParticlePositions();
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}
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// Insert new particles from the inflow boundary
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@ -764,12 +765,14 @@ Foam::vector Foam::DsmcCloud<ParcelType>::equipartitionLinearVelocity
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scalar mass
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)
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{
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return sqrt(kb*temperature/mass)*vector
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(
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rndGen_.GaussNormal(),
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rndGen_.GaussNormal(),
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rndGen_.GaussNormal()
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);
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return
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sqrt(kb*temperature/mass)
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*vector
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(
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rndGen_.GaussNormal(),
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rndGen_.GaussNormal(),
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rndGen_.GaussNormal()
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);
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}
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@ -782,11 +785,7 @@ Foam::scalar Foam::DsmcCloud<ParcelType>::equipartitionInternalEnergy
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{
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scalar Ei = 0.0;
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if
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(
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iDof < 2.0 + SMALL
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&& iDof > 2.0 - SMALL
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)
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if (iDof < 2.0 + SMALL && iDof > 2.0 - SMALL)
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{
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// Special case for iDof = 2, i.e. diatomics;
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Ei = -log(rndGen_.scalar01())*kb*temperature;
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@ -105,7 +105,7 @@ Foam::DsmcCloud<ParcelType>::constProps
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{
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FatalErrorIn("Foam::DsmcCloud<ParcelType>::constProps(label typeId)")
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<< "constantProperties for requested typeId index "
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<< typeId << " do not exist" << nl
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<< typeId << " do not exist" << nl
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<< abort(FatalError);
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}
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@ -230,11 +230,11 @@ public:
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// Main calculation loop
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// Tracking
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// Tracking
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//- Move the parcel
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template<class TrackData>
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bool move(TrackData& td);
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//- Move the parcel
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template<class TrackData>
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bool move(TrackData& td);
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// Patch interactions
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@ -35,7 +35,8 @@ Foam::BinaryCollisionModel<CloudType>::BinaryCollisionModel
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CloudType& owner,
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const word& type
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)
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: dict_(dict),
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:
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dict_(dict),
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owner_(owner),
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coeffDict_(dict.subDict(type + "Coeffs"))
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{}
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@ -51,8 +51,14 @@ Foam::FreeStream<CloudType>::FreeStream
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if (patchIndex_ == -1)
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{
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FatalErrorIn("Foam::DsmcCloud<ParcelType>::initialise")
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<< "patch " << patchName << " not found." << nl
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FatalErrorIn
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(
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"Foam::FreeStream<CloudType>::FreeStream"
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"("
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"const dictionary&, "
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"CloudType&"
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")"
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) << "patch " << patchName << " not found." << nl
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<< abort(FatalError);
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}
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@ -78,8 +84,14 @@ Foam::FreeStream<CloudType>::FreeStream
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if (moleculeTypeIds_[i] == -1)
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{
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FatalErrorIn("Foam::DsmcCloud<ParcelType>::initialise")
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<< "typeId " << molecules[i] << "not defined in cloud." << nl
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FatalErrorIn
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(
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"Foam::FreeStream<CloudType>::FreeStream"
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"("
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"const dictionary&, "
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"CloudType&"
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")"
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) << "typeId " << molecules[i] << "not defined in cloud." << nl
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<< abort(FatalError);
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}
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}
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@ -175,7 +187,7 @@ void Foam::FreeStream<CloudType>::inflow()
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// Other tangential unit vector. Rescaling in case face is not
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// flat and nw and tw1 aren't perfectly orthogonal
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vector tw2 = nw ^ tw1;
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vector tw2 = nw^tw1;
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tw2 /= mag(tw2);
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forAll(particleFluxAccumulators_, i)
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@ -232,7 +244,7 @@ void Foam::FreeStream<CloudType>::inflow()
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*(
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rndGen.GaussNormal()*tw1
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+ rndGen.GaussNormal()*tw2
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- sqrt(-2.0*log(max(1 - rndGen.scalar01(),VSMALL)))*nw
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- sqrt(-2.0*log(max(1 - rndGen.scalar01(), VSMALL)))*nw
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);
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U += velocity_;
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@ -50,7 +50,6 @@ class FreeStream
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:
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public InflowBoundaryModel<CloudType>
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{
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// Private data
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//- Index of patch to introduce particles across
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@ -73,6 +72,7 @@ class FreeStream
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// across.
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List<Field<scalar> > particleFluxAccumulators_;
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public:
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//- Runtime type information
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@ -35,7 +35,8 @@ Foam::InflowBoundaryModel<CloudType>::InflowBoundaryModel
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CloudType& owner,
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const word& type
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)
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: dict_(dict),
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:
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dict_(dict),
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owner_(owner),
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coeffDict_(dict.subDict(type + "Coeffs"))
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{}
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@ -124,7 +124,6 @@ public:
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//- Introduce particles
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virtual void inflow() = 0;
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};
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@ -36,10 +36,7 @@ Foam::InflowBoundaryModel<CloudType>::New
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CloudType& owner
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)
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{
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word InflowBoundaryModelType
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(
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dict.lookup("InflowBoundaryModel")
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);
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word InflowBoundaryModelType(dict.lookup("InflowBoundaryModel"));
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Info<< "Selecting InflowBoundaryModel " << InflowBoundaryModelType << endl;
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@ -55,7 +52,7 @@ Foam::InflowBoundaryModel<CloudType>::New
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) << "Unknown InflowBoundaryModelType type "
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<< InflowBoundaryModelType
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<< ", constructor not in hash table" << nl << nl
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<< " Valid InflowBoundaryModel types are :" << nl
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<< " Valid InflowBoundaryModel types are:" << nl
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<< dictionaryConstructorTablePtr_->toc() << exit(FatalError);
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}
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@ -40,7 +40,7 @@ Description
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namespace Foam
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{
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/*---------------------------------------------------------------------------*\
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Class NoInflow Declaration
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Class NoInflow Declaration
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\*---------------------------------------------------------------------------*/
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template<class CloudType>
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@ -99,7 +99,7 @@ void Foam::MaxwellianThermal<CloudType>::correct
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vector tw1 = Ut/mag(Ut);
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// Other tangential unit vector
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vector tw2 = nw ^ tw1;
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vector tw2 = nw^tw1;
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scalar T = cloud.T().boundaryField()[wppIndex][wppLocalFace];
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@ -112,7 +112,7 @@ void Foam::MaxwellianThermal<CloudType>::correct
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*(
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rndGen.GaussNormal()*tw1
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+ rndGen.GaussNormal()*tw2
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- sqrt(-2.0*log(max(1 - rndGen.scalar01(),VSMALL)))*nw
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- sqrt(-2.0*log(max(1 - rndGen.scalar01(), VSMALL)))*nw
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);
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U += cloud.U().boundaryField()[wppIndex][wppLocalFace];
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@ -49,7 +49,6 @@ class MaxwellianThermal
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:
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public WallInteractionModel<CloudType>
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{
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public:
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//- Runtime type information
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@ -35,7 +35,8 @@ Foam::WallInteractionModel<CloudType>::WallInteractionModel
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CloudType& owner,
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const word& type
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)
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: dict_(dict),
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:
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dict_(dict),
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owner_(owner),
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coeffDict_(dict.subDict(type + "Coeffs"))
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{}
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@ -163,7 +163,13 @@ Foam::forces::forces
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active_ = false;
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WarningIn
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(
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"forces::forces(const objectRegistry& obr, const dictionary& dict)"
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"Foam::forces::forces"
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"("
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"const word&, "
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"const objectRegistry&, "
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"const dictionary&, "
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"const bool"
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")"
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) << "No fvMesh available, deactivating."
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<< endl;
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}
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