All software
ASPECT - The Advanced Solver for Planetary Evolution, Convection, and Tectonics
ASPECT is a code to simulate convection and tectonic processes in the Earth and other planetary bodies. It has grown from a mantle-convection code into a tool for many geodynamic applications, like glacial isostatic adjustment, lithospheric scale deformation, ore formation and two-phase flow.
- C++
- CFD
- Computational Fluid Dynamics
- + 6
- C++
- Python
- CMake
- + 10
4C Multiphysics
4C is a parallel multiphysics research code for simulating solid/fluid mechanics, scalar transport, and chemical reactions. It supports both single-field and coupled systems, offering ready-to-use solutions for a wide range of physical problems.
- Computational Fluid Dynamics
- High performance computing
- Information
- + 3
- C++
- CMake
- Python
- + 6
GAIA
A framework to study the thermo-chemical evolution of rocky and icy bodies (planets, moons, and planetoids) on a global scale in the solar system and beyond.
- CFD
- Computational Fluid Dynamics
- Earth & Environment
- + 4
Multiphase Code Repository by HZDR for OpenFOAM Foundation Software
The Multiphase Code Repository by HZDR provides research code based on OpenFOAM Foundation Software for simulating multiphase flows. Its focus is MultiMorph, an morphology-adaptive Euler-Euler model, supported by validation cases and workflows for robust industrial applications.
- Computational Fluid Dynamics
- Energy
- Euler-Euler method
- + 5
- C++
- Shell
- Lex
- + 2
Multiphase Cases Repository by HZDR for OpenFOAM Foundation Software
This repository contains simulation setups for Multiphase Code Repository by HZDR. The simulation setups are divided into mono- and polydisperse bubbly flows utilizing the set of Baseline models of HZDR, setups using the morphology-adaptive multifield two-fluid model and miscellaneous cases.
- Baseline model
- Computational Fluid Dynamics
- Euler-Euler method
- + 9
Independent Parallel Particle Layer (IPPL)
IPPL is a C++ library to develop performance portable code for fully Eulerian, Lagrangian or hybrid Eulerian-Lagrangian methods. IPPL supports simulations in one to six dimensions, mixed precision, and asynchronous execution in different execution spaces (e.g. CPUs and GPUs).
- Computational Fluid Dynamics
- GPU
- High performance computing
- + 5
- C++
- CMake
- Shell
- + 3
AI4HPC
AI4HPC, part of CoE RAISE, is an open-source library to train AI models with CFD datasets on HPC systems. AI4HPC also includes a benchmarking suite to test the limits of any system with CPUs and GPUs towards Exascale and a HyperParameter Optimization (HPO) suite for scalable HPO tasks.
- Artificial Intelligence
- Computational Fluid Dynamics
- CPU
- + 4