featool-multiphysics

Solve multiphysics engineering problems with geometry, meshing, physics, and solvers.

10|2|Updated Mar 8, 2026
One-click install
npx skills add https://github.com/mahmoud20138/Tradecraft --skill featool-multiphysics
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: featool-multiphysics
Source: https://github.com/mahmoud20138/Tradecraft/tree/main/plugins/tradecraft/skills/featool-multiphysics
Command: npx skills add https://github.com/mahmoud20138/Tradecraft --skill featool-multiphysics

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

FEATool Multiphysics provides an integrated platform to model, simulate, and analyze coupled physics problems across multiple domains, reducing the need to stitch together disparate tools and workflows.

Core Features & Use Cases

  • Integrated multiphysics workflow: geometry, meshing, physics selection, and coupling in one environment.
  • Solver integrations: OpenFOAM, FEniCS, and SU2 support for CFD/FEA; built-in solvers for quick prototyping.
  • APIs & visualization: Python and MATLAB APIs; export results to ParaView/Plotly for visualization.
  • Use cases: heat transfer with fluid-structure interaction, electromagnetics with coupled PDEs, parametric studies and education.

Quick Start

Set up a simple multiphysics model using the built-in workflow and run a sample simulation to see results.

Frequently Asked Questions about featool-multiphysics

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I run a multiphysics simulation coupling CFD and FEA in one workflow?

Run multiphysics simulations by unifying geometry, meshing, physics selection, and solver coupling within a single integrated platform workflow. This environment supports CFD and FEA orchestration to set up, execute, and visualize coupled physics problems without stitching together disparate tools.

Does FEATool work with OpenFOAM, FEniCS, and SU2 solvers?

Yes, FEATool integrates with OpenFOAM, FEniCS, and SU2 solvers. It orchestrates these external solver integrations for CFD and FEA alongside built-in solvers, enabling quick setup, execution, and visualization of comprehensive multiphysics simulations through Python or MATLAB APIs.

What is the best way to set up and solve coupled PDEs for electromagnetics and heat transfer?

The best way to solve coupled PDEs for electromagnetics and heat transfer is using an integrated multiphysics platform. It supports physics selection and coupling in one environment, allowing you to define and execute complex coupled PDE problems efficiently.

Can I use Python or MATLAB APIs to automate multiphysics simulation setup and visualization?

Yes, you can use Python and MATLAB APIs to automate simulation setup, execution, and visualization. These APIs enable quick programmatic control over the multiphysics workflow and allow exporting results to ParaView or Plotly for postprocessing.

How do I visualize CFD and FEA results after running a multiphysics simulation?

Visualize CFD and FEA results by exporting simulation outputs to ParaView or Plotly. The integrated platform supports comprehensive postprocessing requirements, enabling quick visualization of solver results directly through its Python or MATLAB APIs.

When do I need an end-to-end multiphysics simulation platform instead of separate solver tools?

You need an end-to-end multiphysics platform when modeling coupled physics problems across multiple domains, reducing the need to stitch together disparate tools and workflows. It is essential for comprehensive setup, solver orchestration, and postprocessing in integrated simulations.