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synced 2025-11-28 03:28:01 +00:00
BUG: cyclicACMI: change order of AMI initialisation
The resetAMI in the cyclicAMI would go up to cyclicACMI and do the initPatchFaceAreas again - but with already masked areas
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@ -44,7 +44,7 @@ const Foam::scalar Foam::cyclicACMIPolyPatch::tolerance_ = 1e-6;
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void Foam::cyclicACMIPolyPatch::initPatchFaceAreas() const
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{
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if (!empty() && faceAreas0_.empty())
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if (!empty() && (faceAreas0_.empty() || boundaryMesh().mesh().moving()))
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{
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faceAreas0_ = faceAreas();
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}
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@ -52,9 +52,13 @@ void Foam::cyclicACMIPolyPatch::initPatchFaceAreas() const
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const cyclicACMIPolyPatch& nbrACMI =
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refCast<const cyclicACMIPolyPatch>(this->neighbPatch());
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if (!nbrACMI.empty() && nbrACMI.faceAreas0().empty())
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if
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(
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!nbrACMI.empty()
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&& (nbrACMI.faceAreas0().empty() || boundaryMesh().mesh().moving())
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)
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{
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nbrACMI.initPatchFaceAreas();
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nbrACMI.faceAreas0_ = nbrACMI.faceAreas();
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}
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}
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@ -136,11 +140,13 @@ void Foam::cyclicACMIPolyPatch::setNeighbourFaceAreas() const
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void Foam::cyclicACMIPolyPatch::initGeometry(PstreamBuffers& pBufs)
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{
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// Initialise the AMI so that base geometry (e.g. cell volumes) are
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// correctly evaluated
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resetAMI();
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// Note: cyclicAMIPolyPatch clears AMI so do first
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cyclicAMIPolyPatch::initGeometry(pBufs);
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// Initialise the AMI so that base geometry (e.g. cell volumes) are
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// correctly evaluated before e.g. any of the processor patches gets
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// hit (since uses cell volumes in its initGeometry)
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resetAMI();
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}
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@ -156,7 +162,13 @@ void Foam::cyclicACMIPolyPatch::initMovePoints
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const pointField& p
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)
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{
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// Note: cyclicAMIPolyPatch clears AMI so do first
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cyclicAMIPolyPatch::initMovePoints(pBufs, p);
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// Initialise the AMI so that base geometry (e.g. cell volumes) are
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// correctly evaluated before e.g. any of the processor patches gets
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// hit (since uses cell volumes in its initGeometry)
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resetAMI();
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}
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@ -2,7 +2,7 @@
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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) 2013-2014 OpenFOAM Foundation
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\\ / A nd | Copyright (C) 2013-2015 OpenFOAM Foundation
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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@ -37,7 +37,7 @@ Foam::tmp<Foam::Field<Type> > Foam::cyclicACMIPolyPatch::interpolate
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if (owner())
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{
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const scalarField& w = srcMask_;
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const scalarField& w = AMI().srcWeightsSum();
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tmp<Field<Type> > interpField(AMI().interpolateToSource(fldCouple));
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@ -45,7 +45,7 @@ Foam::tmp<Foam::Field<Type> > Foam::cyclicACMIPolyPatch::interpolate
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}
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else
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{
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const scalarField& w = neighbPatch().tgtMask();
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const scalarField& w = neighbPatch().AMI().tgtWeightsSum();
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tmp<Field<Type> > interpField
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(
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@ -82,16 +82,18 @@ void Foam::cyclicACMIPolyPatch::interpolate
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if (owner())
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{
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const scalarField& w = srcMask_;
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const scalarField& w = AMI().srcWeightsSum();
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AMI().interpolateToSource(fldCouple, cop, result);
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result = result + (1.0 - w)*fldNonOverlap;
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}
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else
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{
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const scalarField& w = neighbPatch().tgtMask();
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const scalarField& w = neighbPatch().AMI().tgtWeightsSum();
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neighbPatch().AMI().interpolateToTarget(fldCouple, cop, result);
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result = result + (1.0 - w)*fldNonOverlap;
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}
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}
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@ -24,9 +24,13 @@ License
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\*---------------------------------------------------------------------------*/
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#include "cyclicAMIPolyPatch.H"
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#include "transformField.H"
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#include "SubField.H"
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#include "polyMesh.H"
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#include "Time.H"
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#include "addToRunTimeSelectionTable.H"
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#include "faceAreaIntersect.H"
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#include "ops.H"
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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@ -172,18 +176,19 @@ void Foam::cyclicAMIPolyPatch::calcTransforms
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scalar errorPos = mag(transformedAreaPos + area0);
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scalar errorNeg = mag(transformedAreaNeg + area0);
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if (errorPos < errorNeg)
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{
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revT = revTPos;
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}
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else
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scalar scaledErrorPos = errorPos/(mag(area0) + ROOTVSMALL);
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scalar scaledErrorNeg = errorNeg/(mag(area0) + ROOTVSMALL);
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// One of the errors should be (close to) zero. If this is
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// the reverse transformation flip the rotation angle.
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revT = revTPos;
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if (errorPos > errorNeg && scaledErrorNeg <= matchTolerance())
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{
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revT = revTNeg;
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rotationAngle_ *= -1;
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}
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scalar areaError =
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min(errorPos, errorNeg)/(mag(area0) + ROOTVSMALL);
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scalar areaError = min(scaledErrorPos, scaledErrorNeg);
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if (areaError > matchTolerance())
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{
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@ -406,6 +411,9 @@ void Foam::cyclicAMIPolyPatch::resetAMI
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void Foam::cyclicAMIPolyPatch::initGeometry(PstreamBuffers& pBufs)
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{
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// The AMI is no longer valid. Leave it up to demand-driven calculation
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AMIPtr_.clear();
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polyPatch::initGeometry(pBufs);
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}
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@ -431,6 +439,9 @@ void Foam::cyclicAMIPolyPatch::initMovePoints
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const pointField& p
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)
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{
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// The AMI is no longer valid. Leave it up to demand-driven calculation
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AMIPtr_.clear();
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polyPatch::initMovePoints(pBufs, p);
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// See below. Clear out any local geometry
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@ -447,19 +458,15 @@ void Foam::cyclicAMIPolyPatch::movePoints
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polyPatch::movePoints(pBufs, p);
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calcTransforms();
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// Note: resetAMI is called whilst in geometry update. So the slave
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// side might not have reached 'movePoints'. Is explicitly handled by
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// - clearing geometry of neighbour inside initMovePoints
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// - not using localPoints() inside resetAMI
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resetAMI();
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}
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void Foam::cyclicAMIPolyPatch::initUpdateMesh(PstreamBuffers& pBufs)
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{
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polyPatch::initUpdateMesh(pBufs);
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// The AMI is no longer valid. Leave it up to demand-driven calculation
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AMIPtr_.clear();
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polyPatch::initUpdateMesh(pBufs);
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}
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