vibeflow-fds

Generate FDS input files from 0-caseDict/caseDict and run fire simulations.

12|1|Updated May 19, 2026
One-click install
npx skills add https://github.com/sunrise-hjx/vibeFlow-skills --skill vibeflow-fds
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: vibeflow-fds
Source: https://github.com/sunrise-hjx/vibeFlow-skills/tree/main/vibeflow-fds
Command: npx skills add https://github.com/sunrise-hjx/vibeFlow-skills --skill vibeflow-fds

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes references (resource) components.

What problem does it solve?

This skill provides a focused backend for fire dynamics simulations within VibeCAE by generating, running, and post-processing FDS inputs and outputs from 0-caseDict/caseDict, enabling reproducible fire-safety studies.

Core Features & Use Cases

  • Generate .fds input files from 0-caseDict/caseDict to ensure consistent physics definitions.

  • Run FDS, monitor logs, and parse outputs such as .out, HRR, DEVC/CSV, and Smokeview scenes for validation and reporting.

  • Develop input templates, fire-source/material libraries, scene generators, post-processors, or Smokeview integration scripts to extend backends for fire-safety engineering.

  • Use case: A building-fire scenario where HRR curves, temperature probes, and smoke-layer evolution are generated from a centralized caseDict and analyzed with post-processing tools.

Quick Start

Map 0-caseDict/caseDict to an FDS input, run the simulation, and review the resulting case.fds, case.out, and Smokeview outputs.

Frequently Asked Questions about vibeflow-fds

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I generate FDS input files from a centralized caseDict?

Running FDS simulations from caseDict involves coordinating end-to-end execution, monitoring logs, and parsing outputs like .out files, HRR curves, and DEVC/CSV data for validation.

Can I automate Smokeview visualization for building fire scenarios?

Yes, you can automate Smokeview visualization by generating Smokeview scenes from the centralized caseDict, allowing you to analyze smoke-layer evolution and temperature probes across building compartments.

What is needed to ensure reproducible fire-safety studies with FDS?

Reproducible fire-safety studies require consistent caseDict inputs, reusable templates, and fire-source or material libraries, ensuring clear run provenance and standardized post-processing results.

Does this workflow support post-processing HRR curves and smoke ventilation data?

The workflow supports post-processing HRR curves, smoke ventilation data, and DEVC/CSV outputs by parsing simulation results to validate fire, smoke, and ventilation dynamics across compartments.

What are the limitations of using caseDict for fire dynamics simulations?

Using caseDict for fire dynamics simulations is limited to safety-focused studies involving fire, smoke, and ventilation, requiring properly mapped parameters to generate valid FDS inputs and Smokeview outputs.