Fluid · Packaging
Steady-State Turbulence Modeling (RANS/LES) for Packaging
Apply the steady-state turbulence modeling (rans/les) to real packaging problems — in the browser, with AI assistance.
This is the steady-state variant of the Turbulence Modeling (RANS/LES). RANS averages the flow and models turbulence, while LES resolves large eddies and models the small ones — trading cost for fidelity.
In packaging, teams face challenges like drop protection, material cost, sustainability. The steady-state turbulence modeling (rans/les) directly supports use cases such as drop-test fea, cushioning analysis, material optimization, and PolySim's AI Copilot can recommend settings and catch common setup errors before you run.
Typical Packaging use cases
- Drop-test FEA
- Cushioning analysis
- Material optimization
Upgrade your workspace
Physics Starter Kit — $19
Everything you need to start simulating classical & modern physics.
Recommended products
Shareable Interactive Embed
$3Publish one live, interactive embed of a simulation to any site.
Physics Starter Kit
$19Everything you need to start simulating classical & modern physics.
Solver Validation & Benchmarking
$149Validate your setup against benchmark cases and report accuracy.
Outcome / Accuracy Assurance Review
$15A specialist sanity-checks a result before you rely on it.
FEA Masterclass
$25An in-depth masterclass on finite-element analysis.
API / Developer Plan
$99/moHigh API limits and webhooks for building on PolySim.