fluid-dynamics-workflow

Automate CFD workflows from problem definition to validation.

45|14|Updated Nov 7, 2025
One-click install
npx skills add https://github.com/Soljourner/claude-engineering-skills --skill fluid-dynamics-workflow
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: fluid-dynamics-workflow
Source: https://github.com/Soljourner/claude-engineering-skills/tree/main/skills/thinking/fluid-dynamics
Command: npx skills add https://github.com/Soljourner/claude-engineering-skills --skill fluid-dynamics-workflow

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

The Fluid Dynamics Workflow provides a structured, end-to-end methodology for performing CFD analyses from problem formulation to validation, ensuring rigorous physics, proper discretization, and reproducible results.

Core Features & Use Cases

  • Systematic problem definition, governing equations selection, and boundary/initial conditions planning for CFD tasks.
  • Mesh strategy guidance, turbulence model selection, solver setup, convergence/validation workflows.
  • Use cases include external aerodynamics, internal ducts, and heat-transfer problems, with example workflows such as flow over a cylinder, pipe flow with heat transfer, and airfoil analysis.

Quick Start

Provide a CFD task description and execute the workflow steps from problem definition through validation to obtain verified results.

Frequently Asked Questions about fluid-dynamics-workflow

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

FAQPage Schema
How do I set up an end-to-end CFD workflow from problem definition to validation?▼

An end-to-end CFD workflow guides problem formulation, governing equations selection, boundary and initial conditions planning, mesh strategy, solver configuration, and verification to produce validated fluid dynamics results.

What turbulence model should I select for my CFD analysis?▼

Turbulence model selection is determined during the solver setup phase by evaluating your specific fluid dynamics problem type, whether involving external aerodynamics, internal ducts, or heat-transfer scenarios.

How do I plan mesh strategy and boundary-layer resolution for external aerodynamics?▼

Mesh strategy for external aerodynamics requires defining geometry, establishing mesh quality metrics, and configuring boundary-layer resolution to accurately capture flow gradients before executing the solver.

Can I use this CFD workflow for internal pipe flow with heat transfer?▼

Yes, the CFD workflow supports internal ducts and heat-transfer problems, providing example workflows for pipe flow with heat transfer including boundary conditions and convergence criteria setup.

What convergence criteria and verification steps are needed for CFD validation?▼

CFD validation requires defining solver controls, monitoring convergence criteria, and executing a verification workflow to document that results are reproducible and physically accurate.