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https://codeberg.org/vcbferreira/NuFI_deal.ii
synced 2026-08-12 22:43:17 +02:00
nufi working, dealii solves poisson, E saved as independent spline
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+18
-11
@@ -26,9 +26,10 @@ double NuFISolver::eval_ftilda(unsigned int n,
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const double *E_coeffs) const
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{
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if ( n == 0 ) return f0(x,u);
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const size_t order = Parameters::SPLINE_ORDER;
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const size_t stride_x = 1;
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const size_t stride_t = stride_x*(Nx + Parameters::SPLINE_ORDER - 1);
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const size_t stride_t = stride_x*(Nx + order - 1);
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double Ex;
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const double *c;
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@@ -107,26 +108,32 @@ void NuFISolver::run()
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std::vector<double> sampled_potential = poisson.sample_electric_potential(x_min, x_max, Nx); // Solution of FE
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save_space_vector(sampled_potential, "potential", it);
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// These have been tested to be equivalent
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// ////////////////////////////////////////////////
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std::vector<double> E_vals = grad.compute(sampled_potential); // vector grad of FE solution
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save_space_vector(E_vals, "electric", it);
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std::vector<double> E_vals_deal = poisson.sample_electric_field(x_min, x_max, Nx); // FE grad of soution
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save_space_vector(E_vals_deal, "electricdeal", it);
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// std::vector<double> E_vals = grad.compute(sampled_potential); // vector grad of FE solution
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// save_space_vector(E_vals, "electric", it);
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// std::vector<double> E_vals_deal = poisson.sample_electric_field(x_min, x_max, Nx); // FE grad of soution
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// save_space_vector(E_vals_deal, "electricdeal", it);
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// ////////////////////////////////////////////////
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double* current_coeffs = coeffs.get() + it*stride_t;
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interpolate<double, Parameters::SPLINE_ORDER>(current_coeffs, E_vals.data());
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// interpolate and save current field
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double* current_coeffs = coeffs.get() + it*stride_t;
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interpolate<double, Parameters::SPLINE_ORDER>(current_coeffs, sampled_potential.data());
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std::vector<double> E_x(Nx,0.0) ;
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for(size_t ix=0; ix<Nx; ++ix)
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{
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E_x[ix] = -eval<1>(Parameters::X_DOMAIN_LEFT+ix*dx, current_coeffs);
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}
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if (it % Parameters::PLOT_FREQUENCY == 0)
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{
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std::cout << "Saving results... \n\n";
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save_ftilda(*this, it, coeffs.get(), 128, 128, "results/ftilda_" + std::to_string(it) + ".dat");
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save_rho(*this, it, coeffs.get(), 128, "results/rho_" + std::to_string(it) + ".dat");
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save_Efield(it, coeffs.get(), 128, "results/field_" + std::to_string(it) + ".dat");
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// save_Efield(it, coeffs.get(), 128, "results/field_" + std::to_string(it) + ".dat");
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save_space_vector(E_x, "field", it);
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double int_val = 0.5 * integral_space_vector_squared(current_coeffs);
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int_E_squared.push_back(int_val);
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