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Reconstruction of Schiaparelli and Comars Flight Data
[摘要] ESA recently flew an entry, descent, and landing demonstrator module called Schiaparelli that entered the atmosphere of Mars on the 19th of October, 2016. The instrumentation suite included heatshield and backshell pressure transducers and thermocouples (known as AMELIA) and backshell radiation and direct heatflux-sensing sensors (known as COMARS and ICOTOM). Due to the failed landing of Schiaparelli, only a subset of the flight data was transmitted before and after plasma black-out. The goal of this paper is to present comparisons of the flight data with calculations from NASA simulation tools, DPLR/NEQAIR and LAURA/HARA. DPLR and LAURA are used to calculate the flowfield around the vehicle and surface properties, such as pressure and convective heating. The flowfield data are passed to NEQAIR and HARA to calculate the radiative heat flux. Comparisons will be made to the COMARS total heat flux, radiative heat flux and pressure measurements. Results will also be shown against the reconstructed heat flux which was calculated from an inverse analysis of the AMELIA thermocouple data performed by Astrium. Preliminary calculations are presented in this abstract. The aerodynamics of the vehicle and certain as yet unexplained features of the inverse analysis and forebody data will be investigated.
[发布日期] 2019-07-08 [发布机构] 
[效力级别]  [学科分类] 力学,机械学
[关键词] HEAT FLUX;HEAT SHIELDING;SPACECRAFT SHIELDING;MARS MISSIONS;MARS ATMOSPHERE;MARS LANDING;THERMOCOUPLES;FLOW DISTRIBUTION;COMPUTERIZED SIMULATION;POSTMISSION ANALYSIS (SPACECRAFT) [时效性] 
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