Gammaxact provides an integrated simulation platform that couples high‑fidelity CFD and structural analysis in a single GPU‑accelerated environment. The software offers adaptive mesh refinement, real‑time 3D visualization, and a Python API for automated workflows, and can be deployed on‑premise, private cloud, or SaaS. It enables aerospace, automotive, energy, and heavy‑equipment engineers to run fluid‑structure interaction studies faster, reducing reliance on physical prototypes.
Funding
Funding not disclosed
Founders
Product
Problem
Engineers and scientists often rely on separate, resource‑heavy CFD and structural analysis tools that require extensive setup time, large compute clusters, and lengthy simulation runs, which slows design iteration and increases reliance on costly physical prototypes.
Solution
Gammaxact delivers an integrated simulation platform that couples high‑fidelity computational fluid dynamics with structural analysis in a single environment. The software employs GPU‑accelerated solver kernels and adaptive mesh refinement to achieve accurate results with reduced runtime. A unified graphical interface streamlines geometry import, boundary‑condition definition, and multiphysics coupling, while automated pre‑ and post‑processing tools minimize manual effort. Users can deploy the solution on‑premise or via scalable cloud instances, and results are exported in standard CAD/CAE formats for seamless PLM integration. A Python‑based scripting API enables custom workflows, batch processing, and integration with existing engineering pipelines. By shortening the simulation cycle, teams can validate designs earlier, cut down on physical testing, and improve overall product performance.
Target Audience
Primary customers are aerospace, automotive, energy, and heavy‑equipment manufacturers, as well as research institutions that require high‑performance multiphysics simulation for product development and validation.
Features
- GPU‑accelerated CFD and structural solvers with proprietary parallelization algorithms
- Adaptive mesh refinement that concentrates computational effort where gradients are highest
- Fully coupled multiphysics engine allowing simultaneous fluid‑structure interaction (FSI) analysis
- Integrated pre‑processor for geometry cleanup, mesh generation, and boundary‑condition assignment
- Real‑time 3D visualization and post‑processing tools with export to STL, STEP, and VTK formats
- Python scripting API and REST endpoints for automation, custom material models, and CI/CD integration
- Flexible deployment options: on‑premise clusters, private cloud, or SaaS with elastic scaling
- Compatibility with industry standards (OpenFOAM, ANSYS, Abaqus) for data exchange and model migration