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Strongly coupled computation of material response and nonequilibrium flow for hypersonic ablation

Producción científica: Articlerevisión exhaustiva

87 Citas (Scopus)

Resumen

The steps necessary to achieve the strong coupling between a flowfield solver and a material response solver are presented. This type of coupling is required to accurately capture the complex aerothermodynamic physics occurring during hypersonic atmospheric entries. A blowing boundary condition for the flowfield solver is proposed. This allows the ablating gas calculated by the material response solver to be correctly injected in the boundary layer. A moving mesh algorithm for the flowfield solver that implicitly enforces the geometric conservation law is presented. Using that capability, a mesh movement procedure for surface recession and for accurate shock capturing is proposed. The entire technique is tested using a material response solver with surface ablation and pyrolysis coupled to a hypersonic solver for weakly ionized flows in thermochemical nonequilibrium. Results using the reentry trajectory of the IRV-2 test vehicle are presented, showing that the surface heat fluxes remain accurate as the vehicle geometry and freestream conditions change.

Idioma originalEnglish
Páginas (desde-hasta)89-104
Número de páginas16
PublicaciónJournal of Spacecraft and Rockets
Volumen52
N.º1
DOI
EstadoPublished - ene 1 2015

Nota bibliográfica

Publisher Copyright:
Copyright © 2014 by Alexandre Martin and Iain D. Boyd.

Financiación

The authors would like to thank the Government of Québec, which, through the Fonds de Recherche sur la Nature et les Technologies, provided a fellowship to A. Martin. Additional funding was provided by NASA SBIR Phase-2 Award NNX10CC53P and NASA EPSCoR RA Award NNX13AN04A. I. D. Boyd also gratefully acknowledges funding for this work through Air Force Office of Scientific Research grant FA-9550-11-1-0309.

FinanciadoresNúmero del financiador
Government of Québec
National Aeronautics and Space AdministrationNNX10CC53P, NNX13AN04A
Air Force Office of Scientific Research, United States Air ForceFA-9550-11-1-0309
Fonds Québécois de la Recherche sur la Nature et les Technologies

    ASJC Scopus subject areas

    • Aerospace Engineering
    • Space and Planetary Science

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