How Gaganyaan’s thermal protection system will survive re-entry | Explained

The Gaganyaan crew module requires a sophisticated thermal protection system to survive the extreme heat generated during atmospheric re-entry. The system uses ablative materials to dissipate temperatures reaching 1,800° C, ensuring the module remains safe for the crew.
Why it matters
Thermal protection is a critical safety requirement for human spaceflight, as re-entry conditions are too fast for human intervention and failure would be catastrophic.
The atmospheric phase of all space missions is challenging for both ascending rockets and descending space capsules.
As the rocket lifts off from the earth and heads towards its orbit, it accelerates slowly through the atmosphere to keep the mechanical loads on the vehicle to a minimum. When a space capsule, like the Gaganyaan crew module, re-enters from its orbit around the earth, it will hit the atmosphere at a blistering speed of 7,500-8,000 m/s. More than 99% of this kinetic energy will be dissipated into the atmosphere as heat energy. However, a small portion directed back towards the module will still be intense enough to melt it if it is not protected by a robust thermal protection system (TPS).
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