HomeSpace & AstronomyRegenerative Fuel Cell: Lunar Night Power Storage

Regenerative Fuel Cell: Lunar Night Power Storage

Simulate a regenerative hydrogen fuel cell storing solar power across the two-week lunar day/night cycle: watch a PEM electrolyzer split water into H2 and O2 during sunlight and a fuel cell recombine them for power through the long lunar night.

Space & Astronomy3DModerate60 FPS📱 Mobile-adapted
space-tech-topic-41 ↗ Open standalone

A regenerative fuel cell closes the electrolysis/fuel-cell loop to store solar power for spacecraft and surface bases that must survive long stretches of darkness — most notably the Moon's roughly two-week night, where a battery heavy enough to last would eat too much of the mission's mass budget. This simulator models the real power balance: during sunlight a PEM electrolyzer splits stored water into hydrogen and oxygen using surplus solar power, filling pressurized tanks visualized as instanced gas particles; once the sun sets, a fuel cell recombines that hydrogen and oxygen back into water, releasing electrical power to keep the load running. Tune the day/night cycle length, solar array size, constant load, round-trip efficiency and tank capacity to see whether the system survives a full night or brownouts before sunrise, with live readouts for stored hydrogen mass, net power flow, elapsed mission time and the fraction of load actually served.

⚙ Under the hood

Simulate a regenerative hydrogen fuel cell storing solar power across the two-week lunar day/night cycle: a PEM electrolyzer splits water into H2 and O2 during sunlight, and a fuel cell recombines them for power through the long lunar night.

regenerative fuel cellhydrogenlunar powerelectrolysisenergy storagespace power

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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