Fluid · Electronics & Semiconductors
Steady-State Turbulence Modeling (RANS/LES) for Electronics & Semiconductors
Apply the steady-state turbulence modeling (rans/les) to real electronics & semiconductors 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 electronics & semiconductors, teams face challenges like thermal hotspots, electromagnetic interference, miniaturization. The steady-state turbulence modeling (rans/les) directly supports use cases such as chip thermal analysis, pcb em simulation, package stress, and PolySim's AI Copilot can recommend settings and catch common setup errors before you run.
Typical Electronics & Semiconductors use cases
- Chip thermal analysis
- PCB EM simulation
- Package stress
Upgrade your workspace
Research Paper Repro Kit — $29
Tools to reproduce and publish results from a paper.
Recommended products
Premium Formatting
$6Polished formatting for figures and exports.
Convergence Diagnostics Report
$5A diagnosis of convergence behavior from your solver logs.
Pro Unlimited
$29/moUnlimited local rendering and priority AI copilot.
Benchmark Page Sponsorship
$79/mo"Powered by" sponsorship on validation/benchmark pages.
Snapshot Pack ×20
$2Save twenty simulation states you can branch and restore.
Uncertainty Quantification Run
$13Quantify how input uncertainty propagates to your results.