用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
直接命令不会经过审查 Prompt;运行前请先检查来源。
npx skills add https://github.com/MikeTreml/MissionControl --skill cfd-fluids命令会保持在同一行。复制前请横向滚动并检查完整内容。
想先保存到本地?可下载 SkillsMP 当前能够提供的文件。
Expert Electron application architecture skill for IPC design, main/renderer/preload boundaries, security hardening, performance optimization, packaging strategy, native integration, and cross-platform desktop development. Use when reviewing or designing Electron apps, planning migrations, auditing architecture risks, choosing IPC patterns, diagnosing startup or memory issues, or coordinating related Electron skills.
Generates DrawIO XML diagrams for Amazon Web Services architectures from text descriptions or images. Analyzes existing .drawio files to extract AWS components. Use for AWS architecture diagrams, cloud infrastructure documentation, or when converting AWS diagram images to editable DrawIO format.
Generates DrawIO XML diagrams for Google Cloud Platform architectures from text descriptions or images. Analyzes existing .drawio files to extract GCP components. Use for GCP architecture diagrams, cloud infrastructure documentation, or when converting GCP diagram images to editable DrawIO format.
基于 SOC 职业分类
正在显示 SKILL.md
| name | cfd-fluids |
| description | Deep integration with computational fluid dynamics tools for internal and external flow analysis |
| allowed-tools | ["Read","Write","Glob","Grep","Bash"] |
| metadata | {"specialization":"mechanical-engineering","domain":"science","category":"thermal-fluid-analysis","priority":"high","phase":1,"tools-libraries":["ANSYS Fluent","ANSYS CFX","OpenFOAM","Star-CCM+","ParaView"]} |
The CFD Analysis skill provides deep integration with computational fluid dynamics tools for internal and external flow analysis, enabling systematic setup, execution, and post-processing of fluid simulations.
CAD Cleanup
Domain Definition
Mesh Types
| Type | Application | Pros/Cons |
|---|---|---|
| Structured hex | Simple geometries | High quality, more effort |
| Unstructured tet | Complex geometries | Flexible, more cells |
| Polyhedral | Complex internal | Good quality, moderate count |
| Hybrid | Mixed regions | Optimized for accuracy |
Boundary Layer Mesh
First cell height: y+ = 1 (wall-resolved)
y+ = 30-300 (wall functions)
y = y+ * mu / (rho * u_tau)
u_tau = sqrt(tau_w / rho)
Mesh Quality Criteria
Orthogonality: > 0.1 (> 0.3 preferred)
Skewness: < 0.95 (< 0.8 preferred)
Aspect ratio: < 100 (< 20 near walls)
| Model | Application | Wall Treatment |
|---|---|---|
| k-epsilon Standard | General industrial | Wall functions |
| k-epsilon Realizable | Rotation, separation | Wall functions |
| k-omega SST | Aerospace, separation | Low-Re or wall functions |
| Spalart-Allmaras | External aero | Low-Re |
| LES/DES | Unsteady, vortex shedding | Wall-resolved |
Inlet Conditions
Outlet Conditions
Wall Conditions
Discretization Schemes
Convection: Second-order upwind (accuracy)
First-order (stability)
Pressure: PRESTO (complex geometry)
Standard (simple geometry)
Convergence Criteria
Residuals: < 1e-4 (typical)
< 1e-6 (high accuracy)
Monitor: Mass imbalance < 0.1%
Force convergence
Flow Visualization
Quantitative Results
{
"geometry": "CAD file path",
"flow_type": "internal|external",
"fluid": {
"name": "string",
"density": "number (kg/m3)",
"viscosity": "number (Pa.s)",
"specific_heat": "number (J/kg.K, if thermal)"
},
"inlet": {
"type": "velocity|mass_flow|pressure",
"value": "number",
"temperature": "number (K, if thermal)"
},
"outlet": {
"type": "pressure|outflow",
"value": "number (if pressure)"
},
{
"flow_results": {
"pressure_drop": "number (Pa)",
"flow_coefficient": "number (Cv)",
"max_velocity": "number (m/s)",
"reynolds_number": "number"
},
"forces": {
"drag": "number (N)",
"lift": "number (N)",
"moment": "array [Mx, My, Mz]"
},
"thermal_results": {
"heat_transfer_rate": "number (W)",
"average_htc": "number (W/m2.K)",
"outlet_temperature": "number (K)"
},
"mesh_statistics": {
min max