Bioreactor Scale-Down Model Qualification
Interactive 3D bioreactor scale-down model: tune bench-scale impeller speed and aeration rate, then find the production-scale impeller speed that reproduces the same oxygen mass-transfer coefficient (kLa) via the van't Riet correlation.
Upstream process development lives or dies on whether a small bench-scale bioreactor genuinely represents the production vessel a biologic will ultimately be manufactured in. This simulator models that "scale-down qualification" exercise directly: two 3D stirred-tank bioreactors — a 1–20 L bench vessel and a fixed 2000 L production vessel — each with an animated Rushton-turbine impeller and rising aeration bubbles, driven by the same van't Riet mass-transfer correlation real process engineers use to estimate the volumetric oxygen mass-transfer coefficient kLa from impeller power per volume and superficial gas velocity. Adjust the bench reactor's working volume, impeller speed and aeration rate, then either hand-tune or auto-match the production impeller speed until the two kLa values converge, watching the live mismatch readout confirm whether the scale-down model would pass qualification.
Interactive 3D bioreactor scale-down model: tune bench-scale impeller speed and aeration rate, then match the production-scale impeller speed so both vessels reach the same oxygen mass-transfer coefficient (kLa) via the van't Riet correlation.
3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install