OPENFOAM ENGINEERING WORKSPACE · PUBLIC BETA
OpenFOAM intelligence for real simulation work.
Plan a case, prepare a structured review, investigate solver evidence and move into the Abecator AI CFD Assistant with the OpenFOAM context already organized.
Use non-confidential information only. This workspace does not run OpenFOAM or certify a simulation.
01define engineeringObjective
02select distribution + version
03review physics + boundaries
04inspect mesh + numerics
05verify conservation + sensitivity
One specialist environment. Seven engineering workflows.
Start with the task you need to complete. FoamAI packages the context and opens the relevant Abecator assistant workflow.
Visual Multi-Block Editor
Draw and split blocks, move split lines, assign patch boundaries, validate conformity and export a complete blockMeshDict.
Build a Case Brief
Organize distribution, physics, solver family, turbulence, meshing and required outputs before editing dictionaries.
Start the guided brief → LIVE03Review Dictionaries
Inspect files from 0, constant and system with deterministic checks and optional AI review.
Debug a Run
Parse fatal errors, Courant-number spikes, continuity growth, bounding warnings and solver breakdown.
Open Solver Log Analyzer → LIVE05Plan Verification
Build checks for conservation, mesh and timestep sensitivity, physical plausibility and comparison evidence.
Create verification plan → LIVE06Generate Case Templates
Create version-labelled, downloadable OpenFOAM skeleton files with assumptions and verification warnings visible.
Open controlled generator → LIVE07Generate blockMeshDict
Build Cartesian, cavity, backward-step, pipe, annulus, nozzle and dam-break mesh dictionaries with controlled multi-block topology.
Open blockMeshDict Generator →Structure the case before asking AI to reason about it.
Complete what you know. The assistant will use the brief as starting context and identify what is missing.
Assistance should not be confused with solver validation.
FoamAI is designed to reduce workflow friction while keeping technical responsibility visible.
Organize and challenge a setup
- Structure the engineering objective
- Review supported text configuration files
- Analyse solver logs and diagnostic evidence
- Identify missing checks and contradictions
- Prepare verification and expert-review briefs
Replace execution or engineering judgement
- Run OpenFOAM on Abecator infrastructure
- Guarantee that generated settings are correct
- Inspect an entire proprietary project safely
- Accept convergence as proof of validity
- Certify results or assume professional responsibility
Move from AI guidance to an OpenFOAM engineer.
For proprietary models, hands-on changes, solver development or consequential engineering decisions, continue through Abecator CFD Consulting.