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Update app to new API
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@ -20,7 +20,7 @@ int main(int argc, char *argv[]) {
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// create input + diffusion coefficients for each grid cell
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std::vector<double> alpha(n, 1 * pow(10, -1));
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std::vector<double> field(n, 1 * std::pow(10, -6));
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std::vector<boundary_condition> bc(n, {0,0});
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std::vector<boundary_condition> bc(n + 2, {0, 0});
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// create instance of diffusion module
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BTCSDiffusion diffu(dim);
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@ -28,7 +28,7 @@ int main(int argc, char *argv[]) {
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diffu.setXDimensions(1, n);
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// set the boundary condition for the left ghost cell to dirichlet
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bc[0] = {Diffusion::BC_CONSTANT, 5*std::pow(10,-6)};
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bc[1] = {Diffusion::BC_CONSTANT, 5 * std::pow(10, -6)};
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// diffu.setBoundaryCondition(1, 0, BTCSDiffusion::BC_CONSTANT,
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// 5. * std::pow(10, -6));
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@ -44,7 +44,7 @@ int main(int argc, char *argv[]) {
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cout << "Iteration: " << i << "\n\n";
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for (auto & cell : field) {
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for (auto &cell : field) {
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cout << cell << "\n";
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}
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@ -1,7 +1,7 @@
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#include <algorithm> // for copy, max
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#include <cmath>
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#include <diffusion/BTCSDiffusion.hpp>
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#include <diffusion/BoundaryCondition.hpp>
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#include <algorithm> // for copy, max
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#include <cmath>
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#include <iomanip>
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#include <iostream> // for std
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#include <vector> // for vector
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@ -20,7 +20,7 @@ int main(int argc, char *argv[]) {
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// create input + diffusion coefficients for each grid cell
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std::vector<double> alpha(n * m, 1 * pow(10, -1));
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std::vector<double> field(n * m, 1 * std::pow(10, -6));
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std::vector<boundary_condition> bc(n*m, {0,0});
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std::vector<boundary_condition> bc((n + 2) * (m + 2), {0, 0});
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// create instance of diffusion module
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BTCSDiffusion diffu(dim);
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@ -28,8 +28,8 @@ int main(int argc, char *argv[]) {
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diffu.setXDimensions(1, n);
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diffu.setYDimensions(1, m);
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//set inlet to higher concentration without setting bc
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field[12] = 5*std::pow(10,-3);
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// set inlet to higher concentration without setting bc
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field[12] = 5 * std::pow(10, -3);
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// set timestep for simulation to 1 second
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diffu.setTimestep(1.);
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@ -1,7 +1,7 @@
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#include <algorithm> // for copy, max
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#include <cmath>
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#include <diffusion/BTCSDiffusion.hpp>
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#include <diffusion/BoundaryCondition.hpp>
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#include <algorithm> // for copy, max
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#include <cmath>
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#include <iomanip>
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#include <iostream> // for std
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#include <vector> // for vector
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@ -20,7 +20,7 @@ int main(int argc, char *argv[]) {
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// create input + diffusion coefficients for each grid cell
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std::vector<double> alpha(n * m, 1 * pow(10, -1));
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std::vector<double> field(n * m, 0.);
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std::vector<boundary_condition> bc(n*m, {0,0});
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std::vector<boundary_condition> bc((n + 2) * (m + 2), {0, 0});
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field[125500] = 1;
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@ -31,7 +31,7 @@ int main(int argc, char *argv[]) {
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diffu.setYDimensions(1., m);
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// set the boundary condition for the left ghost cell to dirichlet
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//diffu.setBoundaryCondition(250, 250, BTCSDiffusion::BC_CONSTANT, 1);
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// diffu.setBoundaryCondition(250, 250, BTCSDiffusion::BC_CONSTANT, 1);
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// for (int d=0; d<5;d++){
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// diffu.setBoundaryCondition(d, 0, BC_CONSTANT, .1);
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// }
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@ -46,8 +46,8 @@ int main(int argc, char *argv[]) {
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// First we output the initial state
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cout << 0;
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for (int i=0; i < m*n; i++) {
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cout << "," << field[i];
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for (int i = 0; i < m * n; i++) {
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cout << "," << field[i];
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}
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cout << endl;
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@ -59,8 +59,8 @@ int main(int argc, char *argv[]) {
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cout << t;
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for (int i=0; i < m*n; i++) {
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cout << "," << field[i];
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for (int i = 0; i < m * n; i++) {
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cout << "," << field[i];
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}
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cout << endl;
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}
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