269 lines
6.4 KiB
C++
269 lines
6.4 KiB
C++
/*--------------------------------*- C++ -*----------------------------------*\
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| ========= | |
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| \\ / F ield | foam-extend: Open Source CFD |
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| \\ / O peration | Version: 3.2 |
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| \\ / A nd | Web: http://www.foam-extend.org |
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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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//process this file using: m4 -P blockMeshDict.m4 > blockMeshDict
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//m4 definitions -----------------------------
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m4_changecom(//)m4_changequote([,])
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m4_define(calc, [m4_esyscmd(perl -e 'printf ($1)')])
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m4_define(pi, 3.14159265358979323844)
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m4_define(rad, [calc($1*pi/180.0)])
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m4_define(VCOUNT, 0)
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m4_define(vlabel, [[// ]Vertex $1 = VCOUNT m4_define($1, VCOUNT)m4_define([VCOUNT], m4_incr(VCOUNT))])
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//Geometry -----------------------------------
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// 2 planes levels
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m4_define(zA, 0.0)
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m4_define(zB, 0.1)
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// Angle span for inner block
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m4_define(angleB, rad( 60.0))
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m4_define(angleD, rad( 150.0))
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// Angle span for outer block
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m4_define(angleA, rad( 5.0))
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m4_define(angleC, rad(41.0))
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// Radial dimensions
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m4_define(r1, 1.0)
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m4_define(r2, 2.0)
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m4_define(r3, 3.0)
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// Mesh parameters
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m4_define(nCells, 5)
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m4_define(BLOCKSIZE_UPSTREAM, 25 17 1)
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m4_define(BLOCKSIZE_DOWNSTREAM, 25 27 1)
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m4_define(grading, 1.0)
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// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
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convertToMeters 1;
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vertices
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(
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//Plane A:
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//Bottom of curved block
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(calc(r1*cos(angleB)) calc(r1*sin(angleB)) zA) vlabel(A0)
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(calc(r2*cos(angleB)) calc(r2*sin(angleB)) zA) vlabel(A1)
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(calc(r1*cos(angleD)) calc(r1*sin(angleD)) zA) vlabel(A2)
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(calc(r2*cos(angleD)) calc(r2*sin(angleD)) zA) vlabel(A3)
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//Plane B:
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//Top of curved block
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(calc(r1*cos(angleB)) calc(r1*sin(angleB)) zB) vlabel(B0)
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(calc(r2*cos(angleB)) calc(r2*sin(angleB)) zB) vlabel(B1)
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(calc(r1*cos(angleD)) calc(r1*sin(angleD)) zB) vlabel(B2)
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(calc(r2*cos(angleD)) calc(r2*sin(angleD)) zB) vlabel(B3)
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//Plane A: Bottom of straight block
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(calc(r2*cos(angleA)) calc(r2*sin(angleA)) zA) vlabel(B4)
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(calc(r3*cos(angleA)) calc(r3*sin(angleA)) zA) vlabel(B5)
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(calc(r2*cos(angleC)) calc(r2*sin(angleC)) zA) vlabel(B6)
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(calc(r3*cos(angleC)) calc(r3*sin(angleC)) zA) vlabel(B7)
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//Plane B: Top of straight block
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(calc(r2*cos(angleA)) calc(r2*sin(angleA)) zB) vlabel(C0)
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(calc(r3*cos(angleA)) calc(r3*sin(angleA)) zB) vlabel(C1)
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(calc(r2*cos(angleC)) calc(r2*sin(angleC)) zB) vlabel(C2)
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(calc(r3*cos(angleC)) calc(r3*sin(angleC)) zB) vlabel(C3)
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);
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blocks
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(
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hex ( A0 A1 A3 A2 B0 B1 B3 B2 ) (BLOCKSIZE_UPSTREAM) simpleGrading (1 1 grading)
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hex ( B4 B5 B7 B6 C0 C1 C3 C2 ) (BLOCKSIZE_DOWNSTREAM) simpleGrading (1 1 grading)
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);
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edges
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(
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// --- PLANE A: Bottom of curved block
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arc A0 A2 (calc(r1*cos((angleB+angleD)/2)) calc(r1*sin((angleB+angleD)/2)) zA)
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arc A1 A3 (calc(r2*cos((angleB+angleD)/2)) calc(r2*sin((angleB+angleD)/2)) zA)
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// --- PLANE B: Top of curved block
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arc B0 B2 (calc(r1*cos((angleB+angleD)/2)) calc(r1*sin((angleB+angleD)/2)) zB)
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arc B1 B3 (calc(r2*cos((angleB+angleD)/2)) calc(r2*sin((angleB+angleD)/2)) zB)
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// --- PLANE A: Bottom of straight block
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arc B4 B6 (calc(r2*cos((angleA+angleC)/2)) calc(r2*sin((angleA+angleC)/2)) zA)
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arc B5 B7 (calc(r3*cos((angleA+angleC)/2)) calc(r3*sin((angleA+angleC)/2)) zA)
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// --- PLANE B: Top of straight block
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arc C0 C2 (calc(r2*cos((angleA+angleC)/2)) calc(r2*sin((angleA+angleC)/2)) zB)
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arc C1 C3 (calc(r3*cos((angleA+angleC)/2)) calc(r3*sin((angleA+angleC)/2)) zB)
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);
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boundary
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(
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outflow
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{
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type patch;
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faces
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(
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(B5 B7 C3 C1)
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);
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}
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inflow
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{
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type patch;
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faces
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(
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(A0 B0 B2 A2)
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);
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}
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upstreamPerio1
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{
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type cyclicGgi;
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shadowPatch upstreamPerio2;
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zone upstreamPerio1Zone;
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bridgeOverlap false;
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rotationAxis (0 0 1);
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rotationAngle 36;
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separationOffset (0 0 0);
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faces
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(
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(B4 B5 C1 C0)
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);
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}
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upstreamPerio2
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{
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type cyclicGgi;
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shadowPatch upstreamPerio1;
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zone upstreamPerio2Zone;
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bridgeOverlap false;
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rotationAxis (0 0 1);
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rotationAngle -36;
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separationOffset (0 0 0);
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faces
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(
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(B6 C2 C3 B7)
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);
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}
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upstreamMixingPlanePatch
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{
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type mixingPlane;
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shadowPatch downstreamMixingPlanePatch;
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zone upstreamMixingPlaneZone;
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ribbonPatch
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{
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discretisation bothPatches;
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sweepAxis Theta;
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stackAxis Z;
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}
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coordinateSystem
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{
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type cylindrical;
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origin (0 0 0);
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axis (0 0 1);
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direction (1 1 0);
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}
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faces
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(
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(B4 C0 C2 B6)
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);
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}
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downstreamMixingPlanePatch
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{
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type mixingPlane;
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shadowPatch upstreamMixingPlanePatch;
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zone downstreamMixingPlaneZone;
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coordinateSystem
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{
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type cylindrical;
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origin (0 0 0);
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axis (0 0 1);
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direction (1 1 0);
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}
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faces
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(
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(A1 A3 B3 B1)
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);
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}
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downstreamWall
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{
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type symmetryPlane;
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faces
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(
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(A0 A2 A3 A1)
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(B0 B1 B3 B2)
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);
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}
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upstreamWall
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{
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type symmetryPlane;
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faces
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(
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(C1 C3 C2 C0)
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(B4 B6 B7 B5)
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);
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}
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downstreamPerio1
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{
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type cyclicGgi;
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shadowPatch downstreamPerio2;
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zone downstreamPerio1Zone;
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bridgeOverlap false;
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rotationAxis (0 0 1);
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rotationAngle 90;
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separationOffset (0 0 0);
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faces
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(
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(A0 A1 B1 B0)
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);
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}
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downstreamPerio2
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{
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type cyclicGgi;
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shadowPatch downstreamPerio1;
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zone downstreamPerio2Zone;
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bridgeOverlap false;
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rotationAxis (0 0 1);
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rotationAngle -90;
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separationOffset (0 0 0);
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faces
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(
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(A2 B2 B3 A3)
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);
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}
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);
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mergePatchPairs
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(
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);
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