CFD solvers implemented in C++20
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Updated
Jun 21, 2024 - C++
CFD solvers implemented in C++20
ExaDG - High-Order Discontinuous Galerkin for the Exa-Scale
Adaptive computational fluid dynamics
A pure template discontinuous Galerkin method project.
C++ implementation of Polygonal Discontinuous Galerkin method within the deal.II Finite Element library.
Discontinuous Galerkin FEM Solver
Adaptive multiresolution discontinuous Galerkin C++ package
A Graphical User Interface for DGFEM-CAA code
Numerical methods for edge and scrape-off layer blob and turbulence simulations. Homepage:
blitzdg is an open-source project aiming to implement parallel discontinuous Galerkin (dg) solvers for common partial differential equations systems using blitz++ for array and tensor manipulations and MPI for distributed parallelism.
Extreme-scale Discontinuous Galerkin Environment (EDGE)
High-order semi-Lagrangian/finite element lattice Boltzmann solver based on deal.ii
Discontinuous Galerkin finite element method (DGFEM) for Acoustic Wave Propagation
Custom version of High-Fidelity Large-Eddy SImulation (HiFiLES) code (https://hifiles.stanford.edu/) by UF Theoretical Fluid Dynamics and Turbulence Group (https://faculty.eng.ufl.edu/fluids/).
Discontinuous Galerkin (DG) solver (C++) coupled with a Quasi-Newton line-search algorithm (Python) to optimize the DG mesh.
A collection of C++ programs that solve advection -reaction problems using DG (Discontinuous Galerkin) upwind methods with a reliable error estimator
Discontinuous Galerkin solver for compressible flows
Discontinuous Galerkin FEM Runge-Kutta solver for hyperbolic systems of equations, in particular for shallow water equations.
Example of usage for gmsh SDK
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