Babysitter cfd-analysis
Deep integration with computational fluid dynamics tools for aerodynamic analysis across all flight regimes
install
source · Clone the upstream repo
git clone https://github.com/a5c-ai/babysitter
Claude Code · Install into ~/.claude/skills/
T=$(mktemp -d) && git clone --depth=1 https://github.com/a5c-ai/babysitter "$T" && mkdir -p ~/.claude/skills && cp -r "$T/library/specializations/domains/science/aerospace-engineering/skills/cfd-analysis" ~/.claude/skills/a5c-ai-babysitter-cfd-analysis && rm -rf "$T"
manifest:
library/specializations/domains/science/aerospace-engineering/skills/cfd-analysis/SKILL.mdsource content
CFD Analysis Skill
Purpose
Provide deep integration with computational fluid dynamics tools for comprehensive aerodynamic analysis across subsonic, transonic, supersonic, and hypersonic flight regimes.
Capabilities
- ANSYS Fluent, OpenFOAM, Star-CCM+ workflow automation
- Mesh generation and quality assessment
- Turbulence model selection and configuration
- Boundary condition specification for various flow regimes
- Post-processing and force/moment extraction
- Mesh independence study automation
- Flow visualization and contour generation
- Convergence monitoring and criteria definition
Usage Guidelines
- Select appropriate turbulence models based on flow regime and Reynolds number
- Ensure mesh quality metrics meet industry standards before running simulations
- Perform mesh independence studies to validate solution accuracy
- Use appropriate boundary conditions for the specific flight condition
- Monitor residuals and force/moment convergence during simulations
- Document all simulation parameters for traceability and reproducibility
Dependencies
- ANSYS Fluent
- OpenFOAM
- Star-CCM+
- ParaView
- Tecplot
Process Integration
- AE-001: CFD Analysis Workflow
- AE-002: Wind Tunnel Test Correlation
- AE-003: Aerodynamic Database Generation