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- W2333034816 abstract "The aerothermal database generated for the design of the Stardust Sample Return Capsule afterbody heatshield is described. Using high-fidelity Navier-Stokes wake flow simulations with and without forebody ablation products, unique afterbody heating and pressure profiles along Stardust's 12.6 krn/s Earth atmospheric entry trajectory are calculated. The flow simulations indicate that the afterbody heating and pressure profiles in time are significantly different than the forebody pressure and heating profiles; the afterbody heat pulse is longer, producing a higher integrated heat load, and, the peak values in the pressure and the heating occur later in the trajectory than on the forebody. In light of these results, traditional afterbody heatshield design methodology is shown to be nonconservative for the Stardust sample return capsule shape and entry conditions. The afterbody aerothermal environment is explained in terms of the relevant flow physics. The computations are shown to agree qualitatively with Viking base pressure flight data." @default.
- W2333034816 created "2016-06-24" @default.
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- W2333034816 date "1997-06-23" @default.
- W2333034816 modified "2023-09-23" @default.
- W2333034816 title "Wake flow calculations with ablation for the Stardust Sample Return Capsule" @default.
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- W2333034816 doi "https://doi.org/10.2514/6.1997-2477" @default.
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