angledDuct: Removed blockMeshDict.m4 and replaced by angledDuct dictionary.
Vertices are generated using run time compilation functionality. File duplication avoided by placement in: tutorials/resources/blockMesh/angledDuct.
This commit is contained in:
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../../angledDuctImplicit/system/blockMeshDict.m4
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@ -1,11 +1,9 @@
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#!/bin/sh
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cd ${0%/*} || exit 1 # Run from this directory
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m4 system/blockMeshDict.m4 > system/blockMeshDict
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# Source tutorial run functions
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. $WM_PROJECT_DIR/bin/tools/RunFunctions
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runApplication blockMesh
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runApplication blockMesh -dict $FOAM_TUTORIALS/resources/blockMesh/angledDuct
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runApplication $(getApplication)
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@ -1,137 +0,0 @@
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/*--------------------------------*- C++ -*----------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration | Website: https://openfoam.org
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\\ / A nd | Version: dev
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\\/ M anipulation |
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\*---------------------------------------------------------------------------*/
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FoamFile
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{
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version 2.0;
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`format' ascii;
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class dictionary;
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object blockMeshDict;
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}
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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// block definition for a porosity with an angled inlet/outlet
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// the porosity is not aligned with the main axes
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//
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dnl> -----------------------------------------------------------------
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dnl> <STANDARD DEFINITIONS>
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dnl>
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changecom(//)changequote([,]) dnl>
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define(calc, [esyscmd(perl -e 'print ($1)')]) dnl>
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define(VCOUNT, 0) dnl>
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define(vlabel, [[// ]pt VCOUNT ($1) define($1, VCOUNT)define([VCOUNT], incr(VCOUNT))]) dnl>
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dnl>
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define(hex2D, hex ($1b $2b $3b $4b $1f $2f $3f $4f)) dnl>
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define(quad2D, ($1f $1b $2b $2f)) dnl>
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define(frontQuad, ($1f $2f $3f $4f)) dnl>
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define(backQuad, ($4b $3b $2b $1b)) dnl>
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dnl>
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dnl> </STANDARD DEFINITIONS>
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dnl> -----------------------------------------------------------------
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dnl>
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define(ncells, 20) dnl>
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define(ninlet, 15) dnl>
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define(nporo, 20) dnl>
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define(noutlet, 20) dnl>
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dnl>
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define(x0,0) dnl>
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define(y0,0) dnl>
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define(y0,0) dnl>
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define(Cos,0.7071067812) dnl> == cos(45)
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define(Sin,0.7071067812) dnl> == sin(45)
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dnl>
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define(width,50) dnl>
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define(zBack,calc(-width/2)) dnl>
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define(zFront,calc(width/2)) dnl>
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define(leninlet,150)dnl>
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define(lenporo,100)dnl>
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define(lenoutlet,100)dnl>
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dnl>
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define(xhyp,calc(Sin*width)) dnl>
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define(yhyp,calc(Cos*width)) dnl>
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define(xinlet,leninlet)dnl>
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define(xporo,calc(Cos*lenporo)) dnl>
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define(yporo,calc(Sin*lenporo)) dnl>
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define(xoutlet,calc(xporo + Cos*lenoutlet)) dnl>
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define(youtlet,calc(yporo + Sin*lenoutlet)) dnl>
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dnl>
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convertToMeters 0.001;
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vertices
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(
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// inlet region
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( -xinlet y0 zBack ) vlabel(in1b)
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( -xinlet yhyp zBack ) vlabel(in2b)
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( -xinlet y0 zFront ) vlabel(in1f)
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( -xinlet yhyp zFront ) vlabel(in2f)
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// join inlet->outlet
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( x0 y0 zBack ) vlabel(join1b)
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( -xhyp yhyp zBack ) vlabel(join2b)
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( x0 y0 zFront ) vlabel(join1f)
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( -xhyp yhyp zFront ) vlabel(join2f)
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// porosity ends ->outlet
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( xporo yporo zBack ) vlabel(poro1b)
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( calc(xporo - xhyp) calc(yporo + yhyp) zBack ) vlabel(poro2b)
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( xporo yporo zFront ) vlabel(poro1f)
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( calc(xporo - xhyp) calc(yporo + yhyp) zFront ) vlabel(poro2f)
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// outlet
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( xoutlet youtlet zBack ) vlabel(out1b)
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( calc(xoutlet - xhyp) calc(youtlet + yhyp) zBack ) vlabel(out2b)
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( xoutlet youtlet zFront ) vlabel(out1f)
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( calc(xoutlet - xhyp) calc(youtlet + yhyp) zFront ) vlabel(out2f)
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);
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blocks
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(
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// inlet block
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hex2D(in1, join1, join2, in2)
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inlet ( ninlet ncells ncells ) simpleGrading (1 1 1)
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// porosity block
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hex2D(join1, poro1, poro2, join2)
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porosity ( nporo ncells ncells ) simpleGrading (1 1 1)
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// outlet block
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hex2D(poro1, out1, out2, poro2)
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outlet ( noutlet ncells ncells ) simpleGrading (1 1 1)
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);
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defaultPatch
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{
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name walls;
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type wall;
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}
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patches
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(
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wall porosityWall
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(
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// porosity block
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frontQuad(join1, poro1, poro2, join2)
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// porosity block
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backQuad(join1, poro1, poro2, join2)
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// porosity block
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quad2D(join1, poro1)
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quad2D(poro2, join2)
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)
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patch inlet
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(
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quad2D(in2, in1)
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)
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patch outlet
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(
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quad2D(out2, out1)
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)
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);
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// ************************************************************************* //
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