WIP: Pull Request for a complete Solver package #2
72
BasicSolver/2D-seq/backstep.par
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72
BasicSolver/2D-seq/backstep.par
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@ -0,0 +1,72 @@
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#==============================================================================
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# Laminar Canal Flow
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#==============================================================================
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# Problem specific Data:
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# ---------------------
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name backstep # name of flow setup
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bcTop 1 # flags for boundary conditions
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bcBottom 1 # 1 = no-slip 3 = outflow
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bcLeft 3 # 2 = free-slip 4 = periodic
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bcRight 3 #
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gx 0.0 # Body forces (e.g. gravity)
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gy 0.0 #
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re 30000.0 # Reynolds number
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u_init 1.0 # initial value for velocity in x-direction
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v_init 0.0 # initial value for velocity in y-direction
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p_init 0.0 # initial value for pressure
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# Geometry Data:
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# -------------
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xlength 30.0 # domain size in x-direction
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ylength 4.0 # domain size in y-direction
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imax 200 # number of interior cells in x-direction
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jmax 50 # number of interior cells in y-direction
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# Time Data:
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# ---------
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te 100.0 # final time
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dt 0.02 # time stepsize
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tau 0.5 # safety factor for time stepsize control (<0 constant delt)
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# Pressure Iteration Data:
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# -----------------------
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itermax 500 # maximal number of pressure iteration in one time step
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eps 0.0001 # stopping tolerance for pressure iteration
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rho 0.52
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omg 1.8 # relaxation parameter for SOR iteration
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gamma 0.9 # upwind differencing factor gamma
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# Particle Tracing Data:
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# -----------------------
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numberOfParticles 60
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startTime 0
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injectTimePeriod 2.0
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writeTimePeriod 0.5
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x1 1.0
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y1 0.0
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x2 1.0
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y2 4.0
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# Obstacle Geometry Data:
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# -----------------------
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# Shape 0 disable, 1 Rectangle/Square, 2 Circle
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shape 1
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xCenter 0.0
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yCenter 0.0
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xRectLength 8.0
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yRectLength 1.0
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circleRadius 1.0
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#===============================================================================
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@ -32,7 +32,7 @@ jmax 50 # number of interior cells in y-direction
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# Time Data:
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# ---------
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te 700.0 # final time
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te 100.0 # final time
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dt 0.02 # time stepsize
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tau 0.5 # safety factor for time stepsize control (<0 constant delt)
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@ -62,7 +62,7 @@ y2 4.0
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# -----------------------
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# Shape 0 disable, 1 Rectangle/Square, 2 Circle
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shape 1
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shape 0
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xCenter 4.0
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yCenter 1
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xRectLength 8.0
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@ -78,7 +78,7 @@ int main (int argc, char** argv)
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/* Added function for particle tracing. Will inject and advance particles as per timePeriod */
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trace(&particletracer, solver.u, solver.v, t);
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//trace(&particletracer, solver.u, solver.v, t);
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t += solver.dt;
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nt++;
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@ -595,7 +595,8 @@ void setSpecialBoundaryCondition(Solver* solver)
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for (int i = 1; i < imax; i++) {
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U(i, jmax + 1) = 2.0 - U(i, jmax);
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}
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} else if (strcmp(solver->problem, "canal") == 0) {
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}
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else if (strcmp(solver->problem, "canal") == 0) {
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double ylength = solver->ylength;
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double y;
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@ -604,6 +605,15 @@ void setSpecialBoundaryCondition(Solver* solver)
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U(0, j) = y * (ylength - y) * 4.0 / (ylength * ylength);
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}
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}
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else if (strcmp(solver->problem, "backstep") == 0) {
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double ylength = solver->ylength;
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double y;
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for (int j = 1; j < jmax + 1; j++) {
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//y = mDy * (j - 0.5);
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U(0, j) = 0.0;
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}
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}
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}
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void setObjectBoundaryCondition(Solver* solver)
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@ -288,7 +288,7 @@ int solveRB(Solver* solver)
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isw = jsw;
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exchange(solver);
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for (int j = 1; j < jmax + 1; j++) {
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for (int j = 1; j < jmaxLocal + 1; j++) {
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for (int i = isw; i < imax + 1; i += 2) {
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double r = RHS(i, j) -
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@ -305,10 +305,10 @@ int solveRB(Solver* solver)
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for (int i = 1; i < imax + 1; i++) {
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P(i, 0) = P(i, 1);
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P(i, jmax + 1) = P(i, jmax);
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P(i, jmaxLocal + 1) = P(i, jmaxLocal);
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}
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for (int j = 1; j < jmax + 1; j++) {
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for (int j = 1; j < jmaxLocal + 1; j++) {
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P(0, j) = P(1, j);
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P(imax + 1, j) = P(imax, j);
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}
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@ -366,7 +366,7 @@ int solveRBA(Solver* solver)
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isw = jsw;
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exchange(solver);
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for (int j = 1; j < jmax + 1; j++) {
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for (int j = 1; j < jmaxLocal + 1; j++) {
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for (int i = isw; i < imax + 1; i += 2) {
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double r = RHS(i, j) -
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@ -385,10 +385,10 @@ int solveRBA(Solver* solver)
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for (int i = 1; i < imax + 1; i++) {
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P(i, 0) = P(i, 1);
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P(i, jmax + 1) = P(i, jmax);
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P(i, jmaxLocal + 1) = P(i, jmaxLocal);
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}
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for (int j = 1; j < jmax + 1; j++) {
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for (int j = 1; j < jmaxLocal + 1; j++) {
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P(0, j) = P(1, j);
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P(imax + 1, j) = P(imax, j);
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}
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