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added reference example FTCS 2D closed
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@ -3,10 +3,12 @@ add_executable(second_example second_example.cpp)
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add_executable(boundary_example1D boundary_example1D.cpp)
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add_executable(FTCS_2D_proto_example FTCS_2D_proto_example.cpp)
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add_executable(FTCS_1D_proto_example FTCS_1D_proto_example.cpp)
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add_executable(reference-FTCS_2D_closed reference-FTCS_2D_closed.cpp)
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target_link_libraries(first_example tug)
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target_link_libraries(second_example tug)
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target_link_libraries(boundary_example1D tug)
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target_link_libraries(FTCS_2D_proto_example tug)
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target_link_libraries(FTCS_1D_proto_example tug)
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target_link_libraries(reference-FTCS_2D_closed tug)
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# target_link_libraries(FTCS_2D_proto_example easy_profiler)
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50
examples/reference-FTCS_2D_closed.cpp
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50
examples/reference-FTCS_2D_closed.cpp
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@ -0,0 +1,50 @@
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#include <tug/Simulation.hpp>
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int main(int argc, char *argv[]) {
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int row = 11;
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int col = 11;
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int domain_row = 10;
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int domain_col = 10;
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// Grid
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Grid grid = Grid(row, col);
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grid.setDomain(domain_row, domain_col);
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MatrixXd concentrations = MatrixXd::Constant(row, col, 0);
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concentrations(5,5) = 1;
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grid.setConcentrations(concentrations);
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MatrixXd alpha = MatrixXd::Constant(row, col, 1);
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for (int i = 0; i < 5; i++) {
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for (int j = 0; j < 6; j++) {
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alpha(i, j) = 0.01;
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}
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}
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for (int i = 0; i < 5; i++) {
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for (int j = 6; j < 11; j++) {
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alpha(i, j) = 0.001;
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}
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}
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for (int i = 5; i < 11; i++) {
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for (int j = 6; j < 11; j++) {
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alpha(i, j) = 0.1;
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}
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}
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grid.setAlpha(alpha, alpha);
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// Boundary
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Boundary bc = Boundary(grid);
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// Simulation
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Simulation sim = Simulation(grid, bc, FTCS_APPROACH);
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sim.setTimestep(0.001);
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sim.setIterations(7000);
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sim.setOutputCSV(CSV_OUTPUT_VERBOSE);
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// RUN
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sim.run();
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}
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@ -6,7 +6,7 @@
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using namespace std;
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double calcAlphaIntercell(double alpha1, double alpha2, bool useHarmonic = false) {
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double calcAlphaIntercell(double alpha1, double alpha2, bool useHarmonic = true) {
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if (useHarmonic) {
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return 2 / ((1/alpha1) + (1/alpha2));
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} else {
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