Import from your favorite mesh and CAD tools














Product
Describe what you want to simulate in natural language, flow type, geometry, and boundary conditions.
SIMD auto-detects patches, selects solvers, generates mesh parameters and turbulence models.
One click to launch on parallel GPU/CPU compute infrastructure. No manual configuration needed.
Monitor residuals in real time, view field visualizations, and get AI-generated reports.
Wonder why this solver, why these boundaries, what does this result mean?
Use cases
Model cryogenic fluid behavior, tank pressurization, and phase change dynamics.Simulate space re-entry heating, nozzle flows, and spacecraft thermal management.Optimize thermal systems from heat exchangers to electronics cooling and conjugate heat transfer.
Describe what you want to simulate in natural language. SIMD's AI agent interprets the physics, detects geometry patches, and generates a complete simulation setup; mesh, boundaries, solver configuration, and turbulence model.
Give me the report of the pressure
Monitor residuals in real time, get AI-generated reports on convergence and field behavior, and ask questions about your simulation results. SIMD explains what happened and why.
Built for every scale
Run simulations faster, learn physical behavior more easily, and avoid getting blocked by setup complexity.
Go from geometry and prompt to a runnable case without rebuilding the workflow manually each time.
Reduce engineering setup time, standardize workflows, and give more people access to simulation internally.