Fluid · Electronics Cooling
2D Semi-Lagrangian Advection for Electronics Cooling
Apply the 2d semi-lagrangian advection to real electronics cooling problems — in the browser, with AI assistance.
This is the 2d variant of the Semi-Lagrangian Advection. Semi-Lagrangian schemes trace characteristics backward in time and interpolate, giving stability at large timesteps — the basis of Stam's Stable Fluids.
In electronics cooling, teams face challenges like hotspot mitigation, fan/heatsink design, acoustic noise. The 2d semi-lagrangian advection directly supports use cases such as heatsink cfd, fan curve modeling, thermal fea, and PolySim's AI Copilot can recommend settings and catch common setup errors before you run.
Typical Electronics Cooling use cases
- Heatsink CFD
- Fan curve modeling
- Thermal FEA
Upgrade your workspace
Compute Mega Pack — $50
Best-value bulk compute: 6,000 Compute Tokens.
Recommended products
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.
Full Multi-Physics Bundle
$49Every domain node pack plus a large compute allotment.
Rush Compute
$8Run a job at 2× priority for faster turnaround.