Yield F(t) — live integral
🌡 700 °C
Regolith grains Escaping He-3

Lunar Helium-3 Thermal Extraction (2D)

Billions of years of solar-wind bombardment have implanted trace helium-3 a few tens of nanometres deep in every grain of lunar regolith — around 20 parts per billion by mass. This 2D canvas model tracks the one step that actually gets it back out: baking a mined batch while an Arrhenius-law release-rate ODE is numerically integrated frame by frame. Set a bake temperature, a cycle duration and a batch mass, then run the cycle and watch a bed of regolith grains heat up, a plume of escaping He-3 rise off them, and a live yield-vs-time chart trace the running integral — alongside readouts for released fraction, extracted mass, heating energy and both directions of the energy/yield tradeoff.