vibeflow-su2

Automate SU2 CFD workflow preparation, execution, and post-processing from caseDict.

12|1|Updated May 19, 2026
One-click install
npx skills add https://github.com/sunrise-hjx/vibeFlow-skills --skill vibeflow-su2
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: vibeflow-su2
Source: https://github.com/sunrise-hjx/vibeFlow-skills/tree/main/vibeflow-su2
Command: npx skills add https://github.com/sunrise-hjx/vibeFlow-skills --skill vibeflow-su2

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes references (resource) components.

What problem does it solve?

Automates the preparation, execution, and post-processing of SU2 CFD workflows from caseDict for aerodynamic analysis and optimization.

Core Features & Use Cases

  • Configuration generation: Produce config.cfg, mesh inputs, and run scripts from 0-caseDict/caseDict.
  • Workflow automation: Manage mesh conversion, restart handling, and history monitoring for reliable reproducibility.
  • Post-processing support: Provide wrappers and hooks for extracting results and generating reports.

Quick Start

From 0-caseDict/caseDict, generate a runnable SU2 configuration and mesh, then execute a validation run.

Frequently Asked Questions about vibeflow-su2

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

FAQPage Schema
How do I automate SU2 CFD workflow preparation from a case dictionary?▼

You can automate SU2 CFD workflows by generating config.cfg files, mesh inputs, and run scripts directly from a caseDict. This ensures reproducible preparation for aerodynamic analysis and optimization tasks.

Does this approach support adjoint optimization and mesh deformation for external aerodynamics?▼

Yes, the automation supports external and internal flows, adjoint optimization, and mesh deformation. It generates ready-to-run config files and meshes to facilitate these complex aerodynamic simulations.

How can I handle mesh conversion and restart files in SU2 automatically?▼

Workflow automation manages mesh conversion, restart handling, and history monitoring automatically. This ensures reliable reproducibility and structured outputs that can be parsed by post-processing tools.

What is the best way to generate runnable SU2 configuration files for multiphysics tasks?▼

The best way is to define your parameters in a caseDict, which then generates runnable inputs, managed run scripts, and structured outputs specifically tailored for multiphysics simulations.

Can I extract aerodynamic results and generate reports after an SU2 run?▼

Yes, post-processing support provides wrappers and hooks for extracting results and generating reports. The structured outputs are designed to be easily parsed by external post-processing tools.

Are there limitations when using caseDict for complex internal flow simulations?▼

The system manages configuration generation and workflow automation for internal flows, but users must ensure their caseDict accurately defines the complex boundary conditions and mesh requirements for reliable results.