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read fields
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@ -41,6 +41,128 @@ namespace Foam
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// * * * * * * * * * * * * * Private Member Functions * * * * * * * * * * * //
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void Foam::sampledIsoSurface::createGeometry() const
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{
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const fvMesh& fvm = static_cast<const fvMesh&>(mesh());
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if (fvm.time().timeIndex() != storedTimeIndex_)
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{
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storedTimeIndex_ = fvm.time().timeIndex();
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// Clear any stored topo
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facesPtr_.clear();
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// Optionally read volScalarField
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autoPtr<volScalarField> readFieldPtr_;
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// 1. see if field in database
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// 2. see if field can be read
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const volScalarField* cellFldPtr = NULL;
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if (fvm.foundObject<volScalarField>(isoField_))
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{
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if (debug)
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{
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Info<< "sampledIsoSurface::createGeometry() : lookup "
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<< isoField_ << endl;
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}
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cellFldPtr = &fvm.lookupObject<volScalarField>(isoField_);
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}
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else
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{
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// Bit of a hack. Read field and store.
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if (debug)
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{
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Info<< "sampledIsoSurface::createGeometry() : reading "
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<< isoField_ << " from time " <<fvm.time().timeName()
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<< endl;
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}
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readFieldPtr_.reset
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(
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new volScalarField
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(
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IOobject
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(
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isoField_,
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fvm.time().timeName(),
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fvm,
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IOobject::MUST_READ,
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IOobject::NO_WRITE,
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false
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),
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fvm
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)
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);
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cellFldPtr = readFieldPtr_.operator->();
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}
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const volScalarField& cellFld = *cellFldPtr;
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tmp<pointScalarField> pointFld
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(
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volPointInterpolation::New(fvm).interpolate(cellFld)
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);
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//- Direct from cell field and point field. Gives bad continuity.
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//const isoSurface iso
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//(
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// fvm,
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// cellFld.internalField(),
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// pointFld().internalField(),
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// isoVal_
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//);
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//- From point field and interpolated cell.
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scalarField cellAvg(fvm.nCells(), scalar(0.0));
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labelField nPointCells(fvm.nCells(), 0);
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{
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for (label pointI = 0; pointI < fvm.nPoints(); pointI++)
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{
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const labelList& pCells = fvm.pointCells(pointI);
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forAll(pCells, i)
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{
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label cellI = pCells[i];
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cellAvg[cellI] += pointFld().internalField()[pointI];
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nPointCells[cellI]++;
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}
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}
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}
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forAll(cellAvg, cellI)
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{
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cellAvg[cellI] /= nPointCells[cellI];
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}
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const isoSurface iso
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(
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fvm,
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cellAvg,
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pointFld().internalField(),
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isoVal_
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);
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const_cast<sampledIsoSurface&>(*this).triSurface::operator=(iso);
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meshCells_ = iso.meshCells();
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triPointMergeMap_ = iso.triPointMergeMap();
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if (debug)
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{
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Pout<< "sampledIsoSurface::createGeometry() : constructed iso:"
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<< nl
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<< " isoField : " << isoField_ << nl
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<< " isoValue : " << isoVal_ << nl
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<< " unmerged points: " << triPointMergeMap_.size() << nl
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<< " points : " << points().size() << nl
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<< " tris : " << triSurface::size() << nl
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<< " cut cells : " << meshCells_.size() << endl;
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}
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}
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}
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// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
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@ -84,6 +84,9 @@ class sampledIsoSurface
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// Private Member Functions
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//- Create iso surface (if time has changed)
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void createGeometry() const;
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//- sample field on faces
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template <class Type>
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tmp<Field<Type> > sampleField
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@ -39,35 +39,8 @@ Foam::sampledIsoSurface::sampleField
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const GeometricField<Type, fvPatchField, volMesh>& vField
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) const
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{
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const fvMesh& fvm = vField.mesh();
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if (fvm.time().timeIndex() != storedTimeIndex_)
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{
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storedTimeIndex_ = fvm.time().timeIndex();
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//- Clear any stored topo
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facesPtr_.clear();
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const volScalarField& cellFld =
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fvm.lookupObject<volScalarField>(isoField_);
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tmp<pointScalarField> pointFld
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(
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volPointInterpolation::New(fvm).interpolate(cellFld)
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);
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const isoSurface iso
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(
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fvm,
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cellFld.internalField(),
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pointFld().internalField(),
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isoVal_
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);
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const_cast<sampledIsoSurface&>(*this).triSurface::operator=(iso);
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meshCells_ = iso.meshCells();
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triPointMergeMap_ = iso.triPointMergeMap();
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}
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// Recreate geometry if time has changed
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createGeometry();
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return tmp<Field<Type> >(new Field<Type>(vField, meshCells_));
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}
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@ -80,36 +53,8 @@ Foam::sampledIsoSurface::interpolateField
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const interpolation<Type>& interpolator
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) const
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{
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const fvMesh& fvm = static_cast<const fvMesh&>(mesh());
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if (fvm.time().timeIndex() != storedTimeIndex_)
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{
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//- Clear any stored topo
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facesPtr_.clear();
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storedTimeIndex_ = fvm.time().timeIndex();
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const volScalarField& cellFld =
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fvm.lookupObject<volScalarField>(isoField_);
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tmp<pointScalarField> pointFld
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(
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volPointInterpolation::New(fvm).interpolate(cellFld)
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);
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const isoSurface iso
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(
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fvm,
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cellFld.internalField(),
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pointFld().internalField(),
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isoVal_
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);
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const_cast<sampledIsoSurface&>(*this).triSurface::operator=(iso);
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meshCells_ = iso.meshCells();
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triPointMergeMap_ = iso.triPointMergeMap();
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}
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// Recreate geometry if time has changed
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createGeometry();
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// One value per point
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tmp<Field<Type> > tvalues(new Field<Type>(points().size()));
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