Merge remote branch 'OpenCFD/master' into olesenm

This commit is contained in:
Mark Olesen
2010-06-02 10:46:45 +02:00
68 changed files with 146 additions and 200 deletions

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@ -12,6 +12,7 @@ bool Foam::checkSync(const wordList& names)
List<wordList> allNames(Pstream::nProcs()); List<wordList> allNames(Pstream::nProcs());
allNames[Pstream::myProcNo()] = names; allNames[Pstream::myProcNo()] = names;
Pstream::gatherList(allNames); Pstream::gatherList(allNames);
Pstream::scatterList(allNames);
bool hasError = false; bool hasError = false;
@ -72,8 +73,8 @@ Foam::label Foam::checkTopology
Info<< " ***FaceZone " << mesh.faceZones()[zoneI].name() Info<< " ***FaceZone " << mesh.faceZones()[zoneI].name()
<< " is not correctly synchronised" << " is not correctly synchronised"
<< " across coupled boundaries." << " across coupled boundaries."
<< " (coupled faces both" << " (coupled faces are either not both "
<< " present in set but with opposite flipmap)" << endl; << " present in set or have same flipmap)" << endl;
noFailedChecks++; noFailedChecks++;
} }
} }

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@ -49,7 +49,7 @@ foreach cmake ( cmake-2.8.1 cmake-2.8.0 cmake-2.6.4 )
end end
# set VERSION and MAJOR (version) variables if not already set # set VERSION and MAJOR (version) variables if not already set
if ( ! $?ParaView_VERSION || "x$ParaView_VERSION" == "x" ) setenv ParaView_VERSION 3.6.1 if ( ! $?ParaView_VERSION ) setenv ParaView_VERSION 3.6.1
if ( ! $?ParaView_MAJOR ) setenv ParaView_MAJOR unknown if ( ! $?ParaView_MAJOR ) setenv ParaView_MAJOR unknown
# if needed, set MAJOR version to correspond to VERSION # if needed, set MAJOR version to correspond to VERSION

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@ -726,6 +726,7 @@ DebugSwitches
shapeList 0; shapeList 0;
shapeToCell 0; shapeToCell 0;
simple 0; simple 0;
sixDoFRigidBodyMotionConstraint 0;
skewCorrected 0; skewCorrected 0;
skewCorrectionVectors 0; skewCorrectionVectors 0;
sliced 0; sliced 0;

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@ -85,6 +85,9 @@ void Foam::polyMesh::calcDirections() const
} }
} }
reduce(nEmptyPatches, maxOp<label>());
reduce(nWedgePatches, maxOp<label>());
if (nEmptyPatches) if (nEmptyPatches)
{ {
reduce(emptyDirVec, sumOp<vector>()); reduce(emptyDirVec, sumOp<vector>());

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@ -498,10 +498,9 @@ bool Foam::faceZone::checkParallelSync(const bool report) const
break; break;
} }
} }
else if (myZoneFlip[bFaceI] == neiZoneFlip[bFaceI])
// Flip state should be opposite.
if (myZoneFlip[bFaceI] == neiZoneFlip[bFaceI])
{ {
// Flip state should be opposite.
hasError = true; hasError = true;
if (report) if (report)

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@ -349,7 +349,10 @@ Foam::label Foam::addPatchCellLayer::addSideFace
// Get my mesh face and its zone. // Get my mesh face and its zone.
label meshFaceI = pp.addressing()[ownFaceI]; label meshFaceI = pp.addressing()[ownFaceI];
label zoneI = mesh_.faceZones().whichZone(meshFaceI); // Zone info comes from any side patch face. Otherwise -1 since we
// don't know what to put it in - inherit from the extruded faces?
label zoneI = -1; //mesh_.faceZones().whichZone(meshFaceI);
bool flip = false;
label addedFaceI = -1; label addedFaceI = -1;
@ -376,6 +379,12 @@ Foam::label Foam::addPatchCellLayer::addSideFace
) )
{ {
otherPatchID = patches.whichPatch(faceI); otherPatchID = patches.whichPatch(faceI);
zoneI = mesh_.faceZones().whichZone(faceI);
if (zoneI != -1)
{
label index = mesh_.faceZones()[zoneI].whichFace(faceI);
flip = mesh_.faceZones()[zoneI].flipMap()[index];
}
break; break;
} }
} }
@ -422,7 +431,7 @@ Foam::label Foam::addPatchCellLayer::addSideFace
false, // flux flip false, // flux flip
otherPatchID, // patch for face otherPatchID, // patch for face
zoneI, // zone for face zoneI, // zone for face
false // face zone flip flip // face zone flip
) )
); );
} }
@ -488,7 +497,7 @@ Foam::label Foam::addPatchCellLayer::addSideFace
false, // flux flip false, // flux flip
-1, // patch for face -1, // patch for face
zoneI, // zone for face zoneI, // zone for face
false // face zone flip flip // face zone flip
) )
); );
@ -1027,12 +1036,21 @@ void Foam::addPatchCellLayer::setRefinement
// Get new neighbour // Get new neighbour
label nei; label nei;
label patchI; label patchI;
label zoneI = -1;
bool flip = false;
if (i == addedCells[patchFaceI].size()-1) if (i == addedCells[patchFaceI].size()-1)
{ {
// Top layer so is patch face. // Top layer so is patch face.
nei = -1; nei = -1;
patchI = patchID[patchFaceI]; patchI = patchID[patchFaceI];
zoneI = mesh_.faceZones().whichZone(meshFaceI);
if (zoneI != -1)
{
const faceZone& fz = mesh_.faceZones()[zoneI];
flip = fz.flipMap()[fz.whichFace(meshFaceI)];
}
} }
else else
{ {
@ -1055,7 +1073,7 @@ void Foam::addPatchCellLayer::setRefinement
false, // flux flip false, // flux flip
patchI, // patch for face patchI, // patch for face
zoneI, // zone for face zoneI, // zone for face
false // face zone flip flip // face zone flip
) )
); );
} }
@ -1076,8 +1094,6 @@ void Foam::addPatchCellLayer::setRefinement
layerFaces_[patchFaceI][0] = meshFaceI; layerFaces_[patchFaceI][0] = meshFaceI;
label zoneI = mesh_.faceZones().whichZone(meshFaceI);
meshMod.setAction meshMod.setAction
( (
polyModifyFace polyModifyFace
@ -1088,8 +1104,8 @@ void Foam::addPatchCellLayer::setRefinement
addedCells[patchFaceI][0], // neighbour addedCells[patchFaceI][0], // neighbour
false, // face flip false, // face flip
-1, // patch for face -1, // patch for face
false, // remove from zone true, //false, // remove from zone
zoneI, // zone for face -1, //zoneI, // zone for face
false // face flip in zone false // face flip in zone
) )
); );

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@ -322,7 +322,9 @@ void Foam::removeCells::setRefinement
if (zoneID >= 0) if (zoneID >= 0)
{ {
const faceZone& fZone = faceZones[zoneID]; const faceZone& fZone = faceZones[zoneID];
zoneFlip = fZone.flipMap()[fZone.whichFace(faceI)]; // Note: we reverse the owner/neighbour of the face
// so should also select the other side of the zone
zoneFlip = !fZone.flipMap()[fZone.whichFace(faceI)];
} }
//Pout<< "Putting exposed internal face " << faceI //Pout<< "Putting exposed internal face " << faceI

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@ -276,28 +276,50 @@ void Foam::fvMeshSubset::subsetZones()
{ {
const faceZone& fz = faceZones[i]; const faceZone& fz = faceZones[i];
// Create list of mesh faces part of the new zone // Expand faceZone to full mesh
labelList subAddressing // +1 : part of faceZone, flipped
( // -1 : ,, , unflipped
subset // 0 : not part of faceZone
( labelList zone(baseMesh().nFaces(), 0);
baseMesh().nFaces(),
fz,
faceMap()
)
);
// Flipmap for all mesh faces
boolList fullFlipStatus(baseMesh().nFaces(), false);
forAll(fz, j) forAll(fz, j)
{ {
fullFlipStatus[fz[j]] = fz.flipMap()[j]; if (fz.flipMap()[j])
{
zone[fz[j]] = 1;
}
else
{
zone[fz[j]] = -1;
}
} }
// Extract sub part
boolList subFlipStatus(subAddressing.size(), false); // Select faces
forAll(subAddressing, j) label nSub = 0;
forAll(faceMap(), j)
{ {
subFlipStatus[j] = fullFlipStatus[faceMap()[subAddressing[j]]]; if (zone[faceMap()[j]] != 0)
{
nSub++;
}
}
labelList subAddressing(nSub);
boolList subFlipStatus(nSub);
nSub = 0;
forAll(faceMap(), subFaceI)
{
label meshFaceI = faceMap()[subFaceI];
if (zone[meshFaceI] != 0)
{
subAddressing[nSub] = subFaceI;
label subOwner = subMesh().faceOwner()[subFaceI];
label baseOwner = baseMesh().faceOwner()[meshFaceI];
// If subowner is the same cell as the base keep the flip status
bool sameOwner = (cellMap()[subOwner] == baseOwner);
bool flip = (zone[meshFaceI] == 1);
subFlipStatus[nSub] = (sameOwner == flip);
nSub++;
}
} }
fZonePtrs[i] = new faceZone fZonePtrs[i] = new faceZone

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@ -19,6 +19,5 @@ streamLine/streamLine.C
streamLine/streamLineParticle.C streamLine/streamLineParticle.C
streamLine/streamLineParticleCloud.C streamLine/streamLineParticleCloud.C
streamLine/streamLineFunctionObject.C streamLine/streamLineFunctionObject.C
streamLine/vectorIOFieldField.C
LIB = $(FOAM_LIBBIN)/libfieldFunctionObjects LIB = $(FOAM_LIBBIN)/libfieldFunctionObjects

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@ -32,14 +32,11 @@ License
defineTypeNameAndDebug(Foam::fieldValues::cellSource, 0); defineTypeNameAndDebug(Foam::fieldValues::cellSource, 0);
template<> template<>
const char* Foam::NamedEnum<Foam::fieldValues::cellSource::sourceType, 1>:: const char* NamedEnum<fieldValues::cellSource::sourceType, 2>::
names[] = names[] = {"cellZone", "all"};
{
"cellZone"
};
const Foam::NamedEnum<Foam::fieldValues::cellSource::sourceType, 1> const NamedEnum<fieldValues::cellSource::sourceType, 2>
Foam::fieldValues::cellSource::sourceTypeNames_; fieldValues::cellSource::sourceTypeNames_;
template<> template<>
const char* Foam::NamedEnum<Foam::fieldValues::cellSource::operationType, 7>:: const char* Foam::NamedEnum<Foam::fieldValues::cellSource::operationType, 7>::
@ -57,35 +54,43 @@ const Foam::NamedEnum<Foam::fieldValues::cellSource::operationType, 7>
void Foam::fieldValues::cellSource::setCellZoneCells() void Foam::fieldValues::cellSource::setCellZoneCells()
{ {
label zoneId = mesh().cellZones().findZoneID(sourceName_); switch (source_)
if (zoneId < 0)
{ {
FatalErrorIn("cellSource::cellSource::setCellZoneCells()") case stCellZone:
<< "Unknown cell zone name: " << sourceName_ {
<< ". Valid cell zones are: " << mesh().cellZones().names() label zoneId = mesh().cellZones().findZoneID(sourceName_);
<< nl << exit(FatalError);
if (zoneId < 0)
{
FatalErrorIn("cellSource::cellSource::setCellZoneCells()")
<< "Unknown cell zone name: " << sourceName_
<< ". Valid cell zones are: " << mesh().cellZones().names()
<< nl << exit(FatalError);
}
cellId_ = mesh().cellZones()[zoneId];
nCells_ = returnReduce(cellId_.size(), sumOp<label>());
break;
}
case stAll:
{
cellId_ = identity(mesh().nCells());
nCells_ = returnReduce(cellId_.size(), sumOp<label>());
break;
}
default:
{
FatalErrorIn("cellSource::setCellZoneCells()")
<< "Unknown source type. Valid source types are:"
<< sourceTypeNames_ << nl << exit(FatalError);
}
} }
const cellZone& cZone = mesh().cellZones()[zoneId];
cellId_.setSize(cZone.size());
label count = 0;
forAll(cZone, i)
{
label cellI = cZone[i];
cellId_[count] = cellI;
count++;
}
cellId_.setSize(count);
nCells_ = returnReduce(cellId_.size(), sumOp<label>());
if (debug) if (debug)
{ {
Pout<< "Original cell zone size = " << cZone.size() Pout<< "Selected source size = " << cellId_.size() << endl;
<< ", new size = " << count << endl;
} }
} }
@ -94,20 +99,7 @@ void Foam::fieldValues::cellSource::setCellZoneCells()
void Foam::fieldValues::cellSource::initialise(const dictionary& dict) void Foam::fieldValues::cellSource::initialise(const dictionary& dict)
{ {
switch (source_) setCellZoneCells();
{
case stCellZone:
{
setCellZoneCells();
break;
}
default:
{
FatalErrorIn("cellSource::initialise()")
<< "Unknown source type. Valid source types are:"
<< sourceTypeNames_ << nl << exit(FatalError);
}
}
Info<< type() << " " << name_ << ":" << nl Info<< type() << " " << name_ << ":" << nl
<< " total cells = " << nCells_ << nl << " total cells = " << nCells_ << nl

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@ -89,7 +89,8 @@ public:
//- Source type enumeration //- Source type enumeration
enum sourceType enum sourceType
{ {
stCellZone stCellZone,
stAll
}; };
//- Source type names //- Source type names

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@ -24,8 +24,7 @@ License
\*----------------------------------------------------------------------------*/ \*----------------------------------------------------------------------------*/
#include "streamLineParticle.H" #include "streamLineParticle.H"
#include "vectorIOFieldField.H" #include "vectorFieldIOField.H"
// * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * // // * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
@ -394,13 +393,13 @@ void Foam::streamLineParticle::readFields(Cloud<streamLineParticle>& c)
); );
c.checkFieldIOobject(c, lifeTime); c.checkFieldIOobject(c, lifeTime);
vectorIOFieldField sampledPositions vectorFieldIOField sampledPositions
( (
c.fieldIOobject("sampledPositions", IOobject::MUST_READ) c.fieldIOobject("sampledPositions", IOobject::MUST_READ)
); );
c.checkFieldIOobject(c, sampledPositions); c.checkFieldIOobject(c, sampledPositions);
// vectorIOFieldField sampleVelocity // vectorFieldIOField sampleVelocity
// ( // (
// c.fieldIOobject("sampleVelocity", IOobject::MUST_READ) // c.fieldIOobject("sampleVelocity", IOobject::MUST_READ)
// ); // );
@ -428,12 +427,12 @@ void Foam::streamLineParticle::writeFields(const Cloud<streamLineParticle>& c)
c.fieldIOobject("lifeTime", IOobject::NO_READ), c.fieldIOobject("lifeTime", IOobject::NO_READ),
np np
); );
vectorIOFieldField sampledPositions vectorFieldIOField sampledPositions
( (
c.fieldIOobject("sampledPositions", IOobject::NO_READ), c.fieldIOobject("sampledPositions", IOobject::NO_READ),
np np
); );
// vectorIOFieldField sampleVelocity // vectorFieldIOField sampleVelocity
// ( // (
// c.fieldIOobject("sampleVelocity", IOobject::NO_READ), // c.fieldIOobject("sampleVelocity", IOobject::NO_READ),
// np // np

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@ -1,43 +0,0 @@
/*---------------------------------------------------------------------------*\
========= |
\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
\\ / O peration |
\\ / A nd | Copyright (C) 1991-2009 OpenCFD Ltd.
\\/ M anipulation |
-------------------------------------------------------------------------------
License
This file is part of OpenFOAM.
OpenFOAM is free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
for more details.
You should have received a copy of the GNU General Public License
along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
Description
vectorFieldField with IO.
\*---------------------------------------------------------------------------*/
#include "vectorIOFieldField.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
defineTemplateTypeNameAndDebugWithName
(
vectorIOFieldField,
"vectorFieldField",
0
);
}
// ************************************************************************* //

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@ -1,49 +0,0 @@
/*---------------------------------------------------------------------------*\
========= |
\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
\\ / O peration |
\\ / A nd | Copyright (C) 1991-2009 OpenCFD Ltd.
\\/ M anipulation |
-------------------------------------------------------------------------------
License
This file is part of OpenFOAM.
OpenFOAM is free software: you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
for more details.
You should have received a copy of the GNU General Public License
along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
Typedef
Foam::vectorIOFieldField
Description
vectorField with IO.
\*---------------------------------------------------------------------------*/
#ifndef vectorIOFieldField_H
#define vectorIOFieldField_H
#include "vectorField.H"
#include "IOField.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
typedef IOField<vectorField> vectorIOFieldField;
}
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#endif
// ************************************************************************* //

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@ -246,10 +246,13 @@ void sixDoFRigidBodyDisplacementPointPatchVectorField::write(Ostream& os) const
{ {
pointPatchField<vector>::write(os); pointPatchField<vector>::write(os);
os.writeKeyword("rhoInf") << rhoInf_ << token::END_STATEMENT << nl;
os.writeKeyword("rhoName") << rhoName_ << token::END_STATEMENT << nl; os.writeKeyword("rhoName") << rhoName_ << token::END_STATEMENT << nl;
if (rhoName_ == "rhoInf")
{
os.writeKeyword("rhoInf") << rhoInf_ << token::END_STATEMENT << nl;
}
if (lookupGravity_ == 0 || lookupGravity_ == -2) if (lookupGravity_ == 0 || lookupGravity_ == -2)
{ {
os.writeKeyword("g") << g_ << token::END_STATEMENT << nl; os.writeKeyword("g") << g_ << token::END_STATEMENT << nl;

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@ -40,7 +40,7 @@ void Foam::sixDoFRigidBodyMotion::applyRestraints()
{ {
if (report_) if (report_)
{ {
Info<< "Restraint " << restraintNames_[rI]; Info<< "Restraint " << restraintNames_[rI] << ": ";
} }
// restraint position // restraint position
@ -89,9 +89,9 @@ void Foam::sixDoFRigidBodyMotion::applyConstraints(scalar deltaT)
forAll(constraints_, cI) forAll(constraints_, cI)
{ {
if (report_) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< "Constraint " << constraintNames_[cI]; Info<< "Constraint " << constraintNames_[cI] << ": ";
} }
// constraint position // constraint position

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@ -121,7 +121,7 @@ bool Foam::sixDoFRigidBodyMotionConstraints::fixedAxis::constrain
bool converged(mag(theta) < tolerance_); bool converged(mag(theta) < tolerance_);
if (motion.report()) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< " angle " << theta Info<< " angle " << theta
<< " force " << constraintForceIncrement << " force " << constraintForceIncrement

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@ -107,7 +107,7 @@ bool Foam::sixDoFRigidBodyMotionConstraints::fixedLine::constrain
bool converged(mag(error) < tolerance_); bool converged(mag(error) < tolerance_);
if (motion.report()) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< " error " << error Info<< " error " << error
<< " force " << constraintForceIncrement << " force " << constraintForceIncrement

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@ -143,7 +143,7 @@ bool Foam::sixDoFRigidBodyMotionConstraints::fixedOrientation::constrain
bool converged(mag(maxTheta) < tolerance_); bool converged(mag(maxTheta) < tolerance_);
if (motion.report()) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< " max angle " << maxTheta Info<< " max angle " << maxTheta
<< " force " << constraintForceIncrement << " force " << constraintForceIncrement

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@ -107,7 +107,7 @@ bool Foam::sixDoFRigidBodyMotionConstraints::fixedPlane::constrain
bool converged(mag(error) < tolerance_); bool converged(mag(error) < tolerance_);
if (motion.report()) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< " error " << error Info<< " error " << error
<< " force " << constraintForceIncrement << " force " << constraintForceIncrement

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@ -116,7 +116,7 @@ bool Foam::sixDoFRigidBodyMotionConstraints::fixedPoint::constrain
bool converged(mag(error) < tolerance_); bool converged(mag(error) < tolerance_);
if (motion.report()) if (sixDoFRigidBodyMotionConstraint::debug)
{ {
Info<< " error " << error Info<< " error " << error
<< " force " << constraintForceIncrement << " force " << constraintForceIncrement

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@ -136,7 +136,7 @@ Foam::sixDoFRigidBodyMotionRestraints::linearAxialAngularSpring::restrain
if (motion.report()) if (motion.report())
{ {
Info<< " angle " << theta Info<< " angle " << theta*sign(a & axis_)
<< " force " << restraintForce << " force " << restraintForce
<< " moment " << restraintMoment << " moment " << restraintMoment
<< endl; << endl;

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@ -96,7 +96,8 @@ void Foam::sixDoFRigidBodyMotionRestraints::linearSpring::restrain
if (motion.report()) if (motion.report())
{ {
Info<< " spring length " << magR Info<< " attachmentPt - anchor " << r
<< " spring length " << magR
<< " force " << restraintForce << " force " << restraintForce
<< " moment " << restraintMoment << " moment " << restraintMoment
<< endl; << endl;

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@ -4,13 +4,13 @@ cd ${0%/*} || exit 1 # run from this directory
# Source tutorial run functions # Source tutorial run functions
. $WM_PROJECT_DIR/bin/tools/CleanFunctions . $WM_PROJECT_DIR/bin/tools/CleanFunctions
cd wingFlutter_snappyHexMesh cd wingMotion_snappyHexMesh
cleanCase cleanCase
cd ../wingFlutter2D_simpleFoam cd ../wingMotion2D_simpleFoam
cleanCase cleanCase
cd ../wingFlutter2D_pimpleDyMFoam cd ../wingMotion2D_pimpleDyMFoam
cleanCase cleanCase
rm -rf 0 rm -rf 0

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@ -5,22 +5,22 @@ cd ${0%/*} || exit 1 # run from this directory
. $WM_PROJECT_DIR/bin/tools/RunFunctions . $WM_PROJECT_DIR/bin/tools/RunFunctions
# Make 3D mesh in slab of cells. # Make 3D mesh in slab of cells.
cd wingFlutter_snappyHexMesh cd wingMotion_snappyHexMesh
runApplication blockMesh runApplication blockMesh
runApplication snappyHexMesh -overwrite runApplication snappyHexMesh -overwrite
# Make a 2D mesh by extruding a patch and solve to steady state. # Make a 2D mesh by extruding a patch and solve to steady state.
cd ../wingFlutter2D_simpleFoam cd ../wingMotion2D_simpleFoam
runApplication extrudeMesh runApplication extrudeMesh
runApplication createPatch -overwrite runApplication createPatch -overwrite
runApplication simpleFoam runApplication simpleFoam
# Copy the mesh from the steady state case and map the results to a # Copy the mesh from the steady state case and map the results to a
# mesh motion case, then solve transient. # mesh motion case, then solve transient.
cd ../wingFlutter2D_pimpleDyMFoam cd ../wingMotion2D_pimpleDyMFoam
cp -r ../wingFlutter2D_simpleFoam/constant/polyMesh/* constant/polyMesh/ cp -r ../wingMotion2D_simpleFoam/constant/polyMesh/* constant/polyMesh/
cp -r 0.org 0 cp -r 0.org 0
runApplication mapFields ../wingFlutter2D_simpleFoam -sourceTime latestTime -consistent runApplication mapFields ../wingMotion2D_simpleFoam -sourceTime latestTime -consistent
mv 0/pointDisplacement.unmapped 0/pointDisplacement mv 0/pointDisplacement.unmapped 0/pointDisplacement
runApplication decomposePar runApplication decomposePar
runParallel pimpleDyMFoam 3 runParallel pimpleDyMFoam 3

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@ -18,7 +18,7 @@ FoamFile
// patch : from patch of another case ('sourceCase') // patch : from patch of another case ('sourceCase')
constructFrom patch; constructFrom patch;
sourceCase "../wingFlutter_snappyHexMesh"; sourceCase "../wingMotion_snappyHexMesh";
sourcePatches (front); sourcePatches (front);
// If construct from patch: patch to use for back (can be same as sourcePatch) // If construct from patch: patch to use for back (can be same as sourcePatch)

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@ -37,7 +37,6 @@ boundaryField
centreOfMass (0.5 0.5 0.5); centreOfMass (0.5 0.5 0.5);
momentOfInertia (0.08622222 0.08622222 0.144); momentOfInertia (0.08622222 0.08622222 0.144);
mass 9.6; mass 9.6;
rhoInf 1;
report on; report on;
value uniform (0 0 0); value uniform (0 0 0);
} }