cells added to eval logic, refinement step to complete

This commit is contained in:
Vasco C. B. Ferreira
2026-07-07 14:21:31 +02:00
parent 67607f685e
commit 0ce81fe849
3 changed files with 56 additions and 41 deletions
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+6 -6
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@@ -11,11 +11,12 @@
using namespace dealii;
template <int dim> struct CellInfo {
// what needs to be given to evaluator
typename DoFHandler<dim>::active_cell_iterator cell;
// usefull for locator
Point<dim> lower;
Point<dim> upper;
double h;
// Point<dim> upper;
// double h;
};
template <int dim> class CellLocator {
@@ -43,9 +44,8 @@ void CellLocator<dim>::rebuild(const DoFHandler<dim> &dof_handler,
info.cell = cell;
info.lower = cell->vertex(0);
info.upper = cell->vertex(GeometryInfo<dim>::vertices_per_cell - 1);
info.h = info.upper[0] - info.lower[0];
// info.upper = cell->vertex(GeometryInfo<dim>::vertices_per_cell - 1);
// info.h = info.upper[0] - info.lower[0];
cells.push_back(info);
}
+50 -35
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@@ -23,6 +23,7 @@
#include <deal.II/grid/grid_generator.h>
#include <deal.II/grid/grid_out.h>
#include <deal.II/grid/grid_refinement.h>
#include <deal.II/grid/grid_tools.h>
#include <deal.II/grid/tria.h>
@@ -34,8 +35,10 @@
#include <deal.II/fe/fe_values.h>
#include <deal.II/numerics/data_out.h>
#include <deal.II/numerics/error_estimator.h>
#include <deal.II/numerics/fe_field_function.h>
#include <deal.II/numerics/matrix_tools.h>
#include <deal.II/numerics/solution_transfer.h>
#include <deal.II/numerics/vector_tools.h>
#include <deal.II/numerics/vector_tools_evaluate.h>
@@ -63,6 +66,7 @@ public:
void initialize();
void solve_step();
void coarse_and_refine_grid();
void run();
void set_rhs_function(std::function<double(const Point<dim> &)> f);
@@ -104,16 +108,16 @@ private:
MappingQ<dim> mapping;
// typename DoFHandler<dim>::active_cell_iterator
// find_cell(const DoFHandler<dim> &dof_handler, const Point<dim> x);
std::vector<typename DoFHandler<dim>::active_cell_iterator> active_cells;
CellLocator<dim> cell_locator;
// std::vector<typename DoFHandler<dim>::active_cell_iterator> active_cells;
mutable std::vector<double> local_solution_buffer;
mutable std::unique_ptr<FEPointEvaluation<dim, dim>> evaluator;
};
//====//====//
// Utilities
//====//====//
template <int dim>
void PoissonProblem<dim>::set_rhs_function(
@@ -195,31 +199,16 @@ std::vector<double> PoissonProblem<dim>::eval_vector_grad(
const Vector<double> &solution,
const std::vector<Point<dim>> &points) const {
const unsigned int n_cells = active_cells.size();
const double xmin = Parameters::X_DOMAIN_LEFT;
const double h = Parameters::LX / static_cast<double>(n_cells);
std::vector<double> values(points.size());
for (unsigned int p = 0; p < points.size(); ++p) {
const double x = points[p][0];
const unsigned int cell_index =
std::min(static_cast<unsigned int>(std::floor((x - xmin) / h)),
n_cells - 1); // index is at most n_cells - 1
const auto cell = active_cells[cell_index];
const double xi = (x - cell->vertex(0)[0]) / h;
Point<dim> unit_point;
unit_point[0] = xi;
const auto cell = cell_locator.locate(points[p]);
cell->get_dof_values(solution, local_solution_buffer.begin(),
local_solution_buffer.end());
evaluator->reinit(cell, ArrayView<const Point<dim>>(&unit_point, 1));
evaluator->reinit(cell, ArrayView<const Point<dim>>(&points[p], 1));
evaluator->evaluate(local_solution_buffer, EvaluationFlags::gradients);
values[p] = evaluator->get_gradient(0)[0];
@@ -228,15 +217,14 @@ std::vector<double> PoissonProblem<dim>::eval_vector_grad(
return values;
}
// template <int dim>
// std::vector<double> eval_point_grad(const Mapping<dim> &mapping,
// const DoFHandler<dim> &dof_handler,
// const Vector<double> &solution,
// const Point<dim> &point) {
// Tensor Ex = VectorTools::point_gradient(mapping, dof_handler, solution,
// points);
// return Ex[0];
// }
template <int dim>
std::vector<double>
eval_point_grad(const Mapping<dim> &mapping, const DoFHandler<dim> &dof_handler,
const Vector<double> &solution, const Point<dim> &point) {
Tensor Ex =
VectorTools::point_gradient(mapping, dof_handler, solution, point);
return Ex[0];
}
//
// template <int dim>
// std::vector<double> eval_vector_grad(const Mapping<dim> &mapping,
@@ -270,7 +258,9 @@ void PoissonProblem<dim>::save_grid_to_file(const std::string &filename) const {
std::cout << "Grid written to " << filename << "\n";
}
//======//======//
// dealii Poisson
//======//======//
template <int dim> void PoissonProblem<dim>::create_mesh() {
GridGenerator::hyper_cube(triangulation, Parameters::X_DOMAIN_LEFT,
@@ -328,11 +318,7 @@ template <int dim> void PoissonProblem<dim>::setup_system() {
system_rhs.reinit(dof_handler.n_dofs());
// used for evaluator to avoid running it anytime there is an eval
active_cells.clear();
for (auto cell = dof_handler.begin_active(); cell != dof_handler.end();
++cell)
active_cells.push_back(cell);
cell_locator.rebuild(dof_handler, triangulation);
local_solution_buffer.resize(fe.n_dofs_per_cell());
evaluator = std::make_unique<FEPointEvaluation<dim, dim>>(mapping, fe,
@@ -383,6 +369,35 @@ template <int dim> void PoissonProblem<dim>::assemble_system() {
}
}
template <int dim> void PoissonProblem<dim>::coarse_and_refine_grid() {
// Add refinement and coasring algorithm here
Vector<float> error_per_cell(triangulation.n_active_cells());
KellyErrorEstimator<dim>::estimate(
dof_handler, QGauss<dim - 1>(fe.degree + 1),
std::map<types::boundary_id, const Function<dim> *>(), solution,
error_per_cell);
GridRefinement::refine_and_coarsen_fixed_number(
triangulation, error_per_cell, 0.3,
0.03); // These numbers are to be reviewd and changed
triangulation.prepare_coarsening_and_refinement();
// solution tranafer
// setup_system
// solution_transfer interpolate
// non_zero_constraint.distribute(current solution)
//
//======//======//
// CHECK step-15.
// rebuild cells with the grid
cell_locator.rebuild(dof_handler, triangulation);
}
template <int dim> void PoissonProblem<dim>::solve() {
SolverControl solver_control(Parameters::CONVERGENCE_ITERATIONS,