Mission Hub / Demo 03
DEMO 03 Β· SPACE FIRE AI

Flame in Freefall

Use a futuristic AI dashboard to explore why flames behave differently in microgravity and why spacecraft fire research matters.

Spacey's briefing

On Earth, hot air rises because of buoyancy. In microgravity that familiar upward flow is greatly reduced, so low-momentum flames can become rounder. Fire safety rules for a spacecraft therefore cannot simply copy what works on Earth.

Need to move on? You can skip Chapter 3, but Spacey will remember that you skipped it.
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Different flame shapeWithout normal buoyancy, flames can look more spherical.
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AI as a toolAI can detect patterns and support analysis, but its outputs must be validated.
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Crew safetyAstronauts cannot simply leave a spacecraft during a fire emergency.
SPACEY FIRE AI // MICROGRAVITY CHAMBER
AI MODEL ONLINE
WATCH & UNDERSTAND

Amazing Flame Comes to Life in Space Station Microgravity

NASA studies small controlled flames in microgravity to understand combustion and improve spacecraft safety. The video shows a real microgravity combustion experiment.

Video source: NASA Johnson on YouTube. It plays inside this page when internet access is available.