more diagnostics on error after refinement due to gauge position

This commit is contained in:
Vasco C. B. Ferreira
2026-07-13 13:06:34 +02:00
parent c213e65f3c
commit 9a8767e6f1
4 changed files with 51 additions and 73 deletions
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@@ -28,6 +28,10 @@ constexpr unsigned int FE_DEGREE = 3;
constexpr unsigned int CONVERGENCE_ITERATIONS = 5000; constexpr unsigned int CONVERGENCE_ITERATIONS = 5000;
constexpr double CONVERGENCE_LIMIT = 1e-8; constexpr double CONVERGENCE_LIMIT = 1e-8;
// gauge fix options
constexpr double GAUGE_X_MIN = 2.5;
constexpr double GAUGE_X_MAX = 3.5;
constexpr double EPS = 0.01; constexpr double EPS = 0.01;
constexpr double WAVE_NR = 0.5; constexpr double WAVE_NR = 0.5;
constexpr double F0_FACTOR = 0.39894228040143267793994; // 1/sqrt(2pi) constexpr double F0_FACTOR = 0.39894228040143267793994; // 1/sqrt(2pi)
+45 -72
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@@ -104,8 +104,7 @@ public:
private: private:
void create_mesh(); void create_mesh();
void setup_system(); void setup_system();
void setup_system_in_refinement_before_interpolating(); void setup_gauge();
void setup_system_in_refinement_after_interpolating();
void assemble_system(); void assemble_system();
void solve(); void solve();
@@ -127,6 +126,8 @@ private:
MappingQ<dim> mapping; MappingQ<dim> mapping;
const bool PRINT_GAUGE_DOF_POSITION = true;
// mutable std::vector<double> local_solution_buffer; // mutable std::vector<double> local_solution_buffer;
// mutable std::unique_ptr<FEPointEvaluation<dim, dim>> evaluator; // mutable std::unique_ptr<FEPointEvaluation<dim, dim>> evaluator;
}; };
@@ -290,6 +291,35 @@ template <int dim> void PoissonProblem<dim>::create_mesh() {
triangulation.refine_global(Parameters::GLOBAL_REFINEMENT); triangulation.refine_global(Parameters::GLOBAL_REFINEMENT);
} }
template <int dim> void PoissonProblem<dim>::setup_gauge() {
const auto support_points =
DoFTools::map_dofs_to_support_points(mapping, dof_handler);
types::global_dof_index gauge_dof = numbers::invalid_dof_index;
// Search only inside the protected region
for (const auto &[dof, point] : support_points) {
if (constraints.is_constrained(dof))
continue;
const double x = point[0];
if (x >= Parameters::X_DOMAIN_RIGHT - .5 ||
(x <= Parameters::X_DOMAIN_LEFT + .5 && x != 0)) {
gauge_dof = dof;
if (PRINT_GAUGE_DOF_POSITION)
std::cout << " gauge_dof = " << gauge_dof
<< " gauge_point = " << point[0] << std::endl;
break;
}
}
Assert(gauge_dof != numbers::invalid_dof_index,
ExcMessage("No gauge DoF found in protected gauge region."));
constraints.add_line(gauge_dof);
constraints.set_inhomogeneity(gauge_dof, 0.0);
}
template <int dim> void PoissonProblem<dim>::setup_system() { template <int dim> void PoissonProblem<dim>::setup_system() {
dof_handler.distribute_dofs(fe); dof_handler.distribute_dofs(fe);
@@ -297,26 +327,9 @@ template <int dim> void PoissonProblem<dim>::setup_system() {
constraints.clear(); constraints.clear();
DoFTools::make_hanging_node_constraints(dof_handler, constraints); DoFTools::make_hanging_node_constraints(dof_handler, constraints);
DoFTools::make_periodicity_constraints(dof_handler, 0, 1, 0, constraints); DoFTools::make_periodicity_constraints(dof_handler, 0, 1, 0, constraints);
// Gauge fix for periodic Poisson: setup_gauge();
// remove the constant nullspace by pinning one unconstrained DoF.
// (by Paul Wilhelm)
types::global_dof_index gauge_dof = numbers::invalid_dof_index;
for (types::global_dof_index i = 0; i < dof_handler.n_dofs(); ++i) {
if (!constraints.is_constrained(i)) {
gauge_dof = i;
break;
}
}
Assert(gauge_dof != numbers::invalid_dof_index,
ExcMessage("No unconstrained DoF found for gauge fixing."));
constraints.add_line(gauge_dof);
constraints.set_inhomogeneity(gauge_dof, 0.0);
constraints.close(); constraints.close();
@@ -337,55 +350,6 @@ template <int dim> void PoissonProblem<dim>::setup_system() {
// update_gradients); // update_gradients);
} }
template <int dim>
void PoissonProblem<dim>::setup_system_in_refinement_before_interpolating() {
dof_handler.distribute_dofs(fe);
constraints.clear();
DoFTools::make_hanging_node_constraints(dof_handler, constraints);
DoFTools::make_periodicity_constraints(dof_handler, 0, 1, 0, constraints);
// Do NOT close the constraints yet.
// The gauge will be added after interpolation.
solution.reinit(dof_handler.n_dofs());
system_rhs.reinit(dof_handler.n_dofs());
cell_locator.rebuild(dof_handler, triangulation);
}
template <int dim>
void PoissonProblem<dim>::setup_system_in_refinement_after_interpolating() {
// Add the gauge constraint.
types::global_dof_index gauge_dof = numbers::invalid_dof_index;
for (types::global_dof_index i = 0; i < dof_handler.n_dofs(); ++i) {
if (!constraints.is_constrained(i)) {
gauge_dof = i;
break;
}
}
Assert(gauge_dof != numbers::invalid_dof_index,
ExcMessage("No unconstrained DoF found for gauge fixing."));
constraints.add_line(gauge_dof);
constraints.set_inhomogeneity(gauge_dof, 0.0);
constraints.close();
DynamicSparsityPattern dsp(dof_handler.n_dofs());
DoFTools::make_sparsity_pattern(dof_handler, dsp, constraints);
sparsity_pattern.copy_from(dsp);
system_matrix.reinit(sparsity_pattern);
}
template <int dim> void PoissonProblem<dim>::assemble_system() { template <int dim> void PoissonProblem<dim>::assemble_system() {
Assert(system_matrix.m() == dof_handler.n_dofs(), Assert(system_matrix.m() == dof_handler.n_dofs(),
@@ -464,6 +428,18 @@ template <int dim> void PoissonProblem<dim>::coarse_and_refine_grid(size_t it) {
GridRefinement::refine_and_coarsen_fixed_number(triangulation, error_per_cell, GridRefinement::refine_and_coarsen_fixed_number(triangulation, error_per_cell,
0.3, 0.03); 0.3, 0.03);
// START: remove refinment flags from edges of domain to alow safe gauge
// fixing
// for (const auto &cell : triangulation.active_cell_iterators()) {
// const double x = cell->center()[0];
// if (x >= Parameters::X_DOMAIN_RIGHT - .5 ||
// x <= Parameters::X_DOMAIN_LEFT + .5) {
// cell->clear_refine_flag();
// cell->clear_coarsen_flag();
// }
// }
// END
triangulation.prepare_coarsening_and_refinement(); triangulation.prepare_coarsening_and_refinement();
SolutionTransfer<dim, Vector<double>> transfer(dof_handler); SolutionTransfer<dim, Vector<double>> transfer(dof_handler);
@@ -474,12 +450,9 @@ template <int dim> void PoissonProblem<dim>::coarse_and_refine_grid(size_t it) {
triangulation.execute_coarsening_and_refinement(); triangulation.execute_coarsening_and_refinement();
setup_system(); setup_system();
// setup_system_in_refinement_before_interpolating();
transfer.interpolate(refined_solution, solution); transfer.interpolate(refined_solution, solution);
// setup_system_in_refinement_after_interpolating();
constraints.distribute(solution); constraints.distribute(solution);
std::cout << "Refinement Finished" << "\n"; std::cout << "Refinement Finished" << "\n";
+2 -1
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@@ -329,11 +329,12 @@ void NuFISolver::run() {
phi_history[it].solution); phi_history[it].solution);
int_E_squared.push_back(int_val); int_E_squared.push_back(int_val);
save_space_vector(int_E_squared, "electricint", it); save_space_vector(int_E_squared, "electricint", it);
std::cout << "Time since start = " << total_time << "\n\n";
plot_time = timer.elapsed() - plot_start; plot_time = timer.elapsed() - plot_start;
std::cout << "Results saved in " << plot_start << "[s]" << "\n";
} }
total_time = timer.elapsed(); total_time = timer.elapsed();
std::cout << "Time since start = " << total_time << "\n\n";
time_file << it << " " << step_time << " " << total_time << " " time_file << it << " " << step_time << " " << total_time << " "
<< compute_time << " " << refine_time << " " << plot_time << "\n"; << compute_time << " " << refine_time << " " << plot_time << "\n";