gmsh-openfoam-orcaflex-stub-mode-details
Sub-skill of gmsh-openfoam-orcaflex: Stub Mode Details.
Best use case
gmsh-openfoam-orcaflex-stub-mode-details is best used when you need a repeatable AI agent workflow instead of a one-off prompt.
Sub-skill of gmsh-openfoam-orcaflex: Stub Mode Details.
Teams using gmsh-openfoam-orcaflex-stub-mode-details should expect a more consistent output, faster repeated execution, less prompt rewriting.
When to use this skill
- You want a reusable workflow that can be run more than once with consistent structure.
When not to use this skill
- You only need a quick one-off answer and do not need a reusable workflow.
- You cannot install or maintain the underlying files, dependencies, or repository context.
Installation
Claude Code / Cursor / Codex
Manual Installation
- Download SKILL.md from GitHub
- Place it in
.claude/skills/stub-mode-details/SKILL.mdinside your project - Restart your AI agent — it will auto-discover the skill
How gmsh-openfoam-orcaflex-stub-mode-details Compares
| Feature / Agent | gmsh-openfoam-orcaflex-stub-mode-details | Standard Approach |
|---|---|---|
| Platform Support | Not specified | Limited / Varies |
| Context Awareness | High | Baseline |
| Installation Complexity | Unknown | N/A |
Frequently Asked Questions
What does this skill do?
Sub-skill of gmsh-openfoam-orcaflex: Stub Mode Details.
Where can I find the source code?
You can find the source code on GitHub using the link provided at the top of the page.
SKILL.md Source
# Stub Mode Details
## Stub Mode Details
When `--stub-mode` is set or `PIPELINE_STUB_MODE=1`:
| Stub | Method | Outputs |
|------|--------|---------|
| `stub_gmsh.py` | Structured hex grid, cylinder void removed | Valid MSH2 file |
| `stub_openfoam.py` | Analytical Cd=1.0 drag, decaying residuals | log.simpleFoam + force.dat |
| `stub_orcaflex.py` | Fixed-free cantilever beam theory | deflection [m], tension [N] |
Analytical reference for cylinder drag:
```
F_drag = 0.5 * rho * U^2 * D * L * Cd
= 0.5 * 1025 * 1.5^2 * 1.0 * 5.0 * 1.0
= 5765.6 N (for D=1m, L=5m, U=1.5m/s)
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