Perform spatial and temporal convergence analysis for solution verification — compute observed convergence orders from grid or timestep refinement studies, apply Richardson extrapolation to estimate discretization error, and calculate the Grid Convergence Index (GCI) per ASME V&V 20 standards. Use when verifying that a numerical solution converges at the expected rate, estimating the error on the finest mesh, checking whether grids are in the asymptotic range, or preparing formal verification reports, even if the user only asks "is my mesh fine enough" or "how accurate is my solution."
$npx -y skills add heshamfs/materials-simulation-skills --skill convergence-studyInstalls into the current project.
Run `npx skills use "https://github.com/heshamfs/materials-simulation-skills" --skill "heshamfs/materials-simulation-skills/convergence-study"` and follow the generated skill instructions now. Read its complete output, redirecting it to a temporary file first if necessary. Resolve relative paths from the supporting-files directory it provides.
Use the skills in "https://github.com/heshamfs/materials-simulation-skills" that are relevant to the current task. Run `npx skills add "https://github.com/heshamfs/materials-simulation-skills"` and select the relevant skills, then follow their instructions.