Agent skill · Workflow & Productivity

abaqus-coupled-analysis

Complete workflow for coupled thermomechanical analysis. Use when user mentions thermal stress, thermal expansion, or temperature causing deformation.

majiayu000github.com/majiayu000GitHub ↗
claude-codecan modify filesMIT
Install
npx skills add majiayu000/claude-skill-registry --skill abaqus-coupled-analysis-jaimecernuda-abaqus-scripting-2 --agent claude-code

Same command for any agent — swap --agent for codex, cursor, copilot.

Facts
Files in the skill folder: 2
SKILL.md size: 5 KB
Bundled scripts: none
Allowed tools: -Read-Write-Edit-Glob-Grep-Bash(abaqus:*)
Path: skills/analysis/abaqus-coupled-analysis-jaimecernuda-abaqus-scripting-2/SKILL.md
Open the folder on GitHub →
Where it comes from
Stars: 534
Language: HTML

Weekly change comes from our own snapshots, not the repository page — it measures attention, not adoption.

From the SKILL.md

# Abaqus Coupled Thermomechanical Analysis Workflow Analyze problems where temperature and mechanical response interact. Use for thermal stress, expansion-induced deformation, and high-temperature structural components. ## When to Use This Skill **Natural language triggers:** - "Thermal stress analysis" - "Thermomechanical coupling" - "Temperature causes stress/deformation" - "Thermal expansion effects" - "Heat causes deformation" - "Thermal shock" - "High temperature component" - "Thermal gradient stress" **Route elsewhere:** - Heat transfer only (no stress) -> `/abaqus-thermal-analysis` - Structural only (no thermal) -> `/abaqus-static-analysis` ## Prerequisites Before starting coupled analysis: 1. Working thermal OR structural analysis that converges 2. Material must have BOTH thermal and mechanical properties 3. Understand whether coupling is one-way or two-way ## Workflow: Coupled Thermomechanical Analysis ### Step 1: Determine Coupling Type Ask if unclear: "Does mechanical deformation affect the temperature field?" | Scenario | Coupling Type | Approach | |----------|---------------|----------| | Heat causes stress, no feedback | One-way | Sequential coupling | | Friction or p

What's inside
Steps it walks through
  1. When to Use This Skill
  2. Prerequisites
  3. Workflow: Coupled Thermomechanical Analysis
  4. Step 1: Determine Coupling Type
  5. Step 2: Define Complete Material Properties
  6. Step 3: Choose Analysis Type
  7. Step 4: Set Initial Conditions
  8. Step 5: Apply Boundary Conditions
  9. Step 6: Mesh with Appropriate Elements
  10. Step 7: Request Coupled Output Variables
  11. What to Ask User
  12. Validation Checklist
  13. Troubleshooting
  14. Related Skills
Ships with 1 file
  • metadata.json
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About this skill
What does the abaqus-coupled-analysis skill do?

Complete workflow for coupled thermomechanical analysis. Use when user mentions thermal stress, thermal expansion, or temperature causing deformation.

How do I install it?

Run `npx skills add majiayu000/claude-skill-registry --skill abaqus-coupled-analysis-jaimecernuda-abaqus-scripting-2 --agent claude-code` — it drops the skill into your project so the agent can pick it up. Swap the --agent value for codex, cursor or copilot if you use one of those.

Where does this skill come from?

From majiayu000/claude-skill-registry, a repository with 534 stars. We read it straight from the repository tree rather than a submitted listing, so what you see here is what is actually published.

Is a popular skill a good skill?

Not necessarily. Stars measure attention, not adoption — a repository can trend for a week and be abandoned. That is why we show the weekly change from our own snapshots next to the total, instead of a single flattering number.

Keep going