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Developing a Pyrolysis Gas Thermal Blocking Model for Reentry DemiseIn NASA’s Object Reentry Survival Analysis Tool (ORSAT), aerodynamic drag and aerothermal heating coefficients are computed for each of the free-molecular, continuum, and transitional flow regimes using analytical and semi-analytical methods. These heating coefficients were derived for typical metallic materials that melt and do not have a strong gas-phase contribution to the flow in the boundary layer. Modern satellites typically feature fiber-reinforced polymer (FRP) components, such as solar array booms, facesheets of sandwich panels, or overwraps for composite-overwrapped pressure vessels (COPV). These FRP materials do not behave the same as metals in the reentry environment, but instead will pyrolyze and develop significant volumes of gas into the boundary layer.

Accurately predicting the reentry demise of FRP components is critical to assessing the reentry casualty risk for modern spacecraft. Research in recent years has shown that this demisability can depend heavily on how the expulsion of gaseous pyrolysis products through the outer surface of the material affects the heat flux at the surface. The ODPO has been developing a reduced-order model of the effect of pyrolysis gas blowing on the heat flux based on correlations between a blowing factor and a non-dimensional heat flux to be incorporated in the upcoming version 7.3 of the Object Reentry Survivability Analysis Tool (ORSAT). This presentation discusses the progress of this development project and the challenges remaining for generalizing the model across families of FRP materials.
Document ID
20260005316
Acquisition Source
Johnson Space Center
Document Type
Presentation
Authors
Benton Greene
(Amentum (United States) Chantilly, France)
Chris Ostrom ORCID
(Johnson Space Center Houston, United States)
Date Acquired
June 11, 2026
Publication Date
June 18, 2026
Publication Information
Publisher: European Space Agency
Subject Category
Nonmetallic Materials
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: AeroThermoDynamics and Design for Demise (ATD3) Workshop
Location: Toulouse
Country: FR
Start Date: June 17, 2026
End Date: June 19, 2026
Sponsors: Centre National d'Études Spatiales, Hypersonic Flight & Atmospheric Reentry – Association pour la Rentrée Atmosphérique, European Space Agency
Funding Number(s)
CONTRACT_GRANT: 80JSC022DA035
WBS: 817091.40.81.72
Distribution Limits
Public
Copyright
Public Use Permitted.
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