Supercritical CO2 Extraction 2D: Packed-Bed Plug-Flow Model
Interactive 2D supercritical CO2 extraction plant: a finite-difference plug-flow model of the packed bed, solved from the real Van der Waals equation of state, drives solute depletion, advection and a pressure-swing separator, with a live density/pressure isotherm and yield-history chart.
This is the 2D counterpart to the 3D supercritical CO₂ extraction plant: instead of animating individual carrier particles through a rendered vessel, it solves an explicit finite-difference plug-flow model of the packed bed — a coupled solid-depletion / fluid-advection system discretised into 48 cells and integrated every frame with an upwind scheme. CO₂ density still comes from the real Van der Waals equation of state, solved independently by Newton–Raphson at your chosen pressure and temperature, and that density drives a Chrastil-style solvating-power index exactly as it does in a real SFE process. The separator panel computes its own density at a fixed lower pressure to show the pressure-swing precipitation step quantitatively, and a live density–pressure isotherm plus a yield-history sparkline expose the underlying physics directly as data rather than only as a 3D animation.
A 2D finite-difference plug-flow model of the same packed-bed CO2 extractor: 48 bed cells coupling solid depletion and fluid advection, solved every frame from the real Van der Waals equation of state, with a pressure-swing separator, a live density-pressure isotherm and a yield-history chart.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install