cfd-analysis

Solid

Deep integration with computational fluid dynamics tools for aerodynamic analysis across all flight regimes

AI & Automation 814 stars 53 forks Updated today MIT

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Skill 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

Details

Author
a5c-ai
Repository
a5c-ai/babysitter
Created
4 months ago
Last Updated
today
Language
JavaScript
License
MIT

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