Gaganyaan's ablative thermal protection system crucial for safe crew re-entry

Gaganyaan's crew module requires a robust thermal protection system (TPS) to withstand extreme temperatures of up to 1,800°C during re-entry into Earth's atmosphere at speeds of 7,500-8,000 m/s. The module will use an ablative TPS, a single-use system that absorbs heat by sacrificing its outer layers through chemical decomposition and physical shedding. This process creates a protective char layer and outgassing vapours, effectively carrying heat away and maintaining the module's internal temperature below 150°C. ISRO's choice of an ablative TPS is based on its proven reliability, ability to handle fluctuating heat loads, and cost-effectiveness, building on lessons from previous missions like SRE and CARE.

Key Points

  • Gaganyaan's crew module needs a robust thermal protection system (TPS) to survive extreme heat during atmospheric re-entry.
  • The ablative TPS works by chemically decomposing and physically shedding its outer layers, creating a protective char and releasing vapours to dissipate heat.
  • This system is designed to keep the module's internal temperature safely below 150°C despite external temperatures reaching 1,800°C.
  • ISRO chose an ablative TPS for its proven reliability, ability to handle fluctuating heat loads, and cost-effectiveness for the single-use module.
  • The technology builds on the success of previous Indian space missions like the Space Capsule Recovery Experiment (SRE) and CARE.

Exam Facts

  • Gaganyaan's crew module will re-enter the atmosphere at speeds of 7,500-8,000 m/s.
  • External temperatures during re-entry can reach up to 1,800°C, while internal temperature is maintained below 150°C.
  • The ablative TPS is 30-35 mm thick.
  • ISRO successfully demonstrated crew module re-entry using an ablative TPS in the LVM-3/CARE mission in 2014.

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All current affairs of 21 August 2026