FEATool - "Physics Simulation Made Easy" (Fully Integrated FEA, FEniCS, OpenFOAM, SU2 Solver GUI & Multi-Physics Simulation Platform)
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Updated
Feb 14, 2025 - MATLAB
The finite element method (FEM) is a numerical method for solving problems of engineering and mathematical physics. Typical problem areas of interest include structural analysis, heat transfer, fluid flow, mass transport, and electromagnetic potential.
FEATool - "Physics Simulation Made Easy" (Fully Integrated FEA, FEniCS, OpenFOAM, SU2 Solver GUI & Multi-Physics Simulation Platform)
Topology Optimization Laboratory
Efficient Matlab Implementation of Adaptive Mesh Refinement in 2D
Matlab toolbox for generating 2D meshes from EBSD data
MATLAB Toolbox for Handling 2D and 3D FEM Meshes
Isogeometric-analysis and FEM code.
Computes effective mode in a 2D wave guide
FEM Tutorial for Beginners
Nonlinear shell dynamics analysis based on FEM shell element with Absolute Nodal Coordinate. Formulation (ANCF).
2D Time independent Schroedinger equation solver
Level set modeling of multi-phase flow in a velocity field using the finite element and finite volume methods
Schrodinger-Poisson solver in 1D demonstrator
Fluid-Structure Interaction Analysis Using FEM and UVLM
Litz Wire Homogenization with COMSOL and MATLAB
3D Graphical Output of well producers and injectors in oil reservoir.
1D Time independent Schroedinger equation solver
A finite element code to solve for the dynamic fragmentation of concrete at different strain rates. A bi-linear cohesive zone model is used for the simulation
3D Time independent Schroedinger equation solver
Computes effective mode in a 1D wave guide
1D Schroedinger solver in semiconductor with effective mass