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首页> 外文期刊>Journal of Thermodynamics >Aerodynamic Analysis of a Manned Space Vehicle for Missions to Mars
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Aerodynamic Analysis of a Manned Space Vehicle for Missions to Mars

机译:火星任务载人航天器的空气动力学分析

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The paper deals with the aerodynamic analysis of a manned braking system entering the Mars atmosphere with the aim to support planetary entry system design studies. The exploration vehicle is an axisymmetric blunt body close to the Apollo capsule. Several fully three-dimensional computational fluid dynamics analyses have been performed to address the capsule aerodynamic performance. To this end, a wide range of flow conditions including reacting and nonreacting flow, different angles of attack, and Mach numbers have been investigated and compared. Moreover, nonequilibrium effects on the flow field around the entry vehicle have also been investigated. Results show that real-gas effects, for all the angles of attack considered, increase both the aerodynamic drag and pitching moment whereas the lift is only slighted affected. Finally, results comparisons highlight that experimental and CFD aerodynamic findings available for the Apollo capsule in air adequately represent the static coefficients of the capsule in the Mars atmosphere.
机译:本文旨在对进入火星大气层的载人制动系统进行空气动力学分析,以支持行星进入系统的设计研究。探测车是靠近阿波罗胶囊的轴对称钝体。为了解决胶囊的空气动力学性能,已经进行了几次全三维计算流体动力学分析。为此,已经研究和比较了各种流动条件,包括反应流和非反应流,不同的迎角和马赫数。此外,还研究了对进入车辆周围流场的非平衡影响。结果表明,在考虑所有迎角的情况下,真实气体效应都会增加空气阻力和俯仰力矩,而对升力的影响很小。最后,结果比较突出了可用于空气中的阿波罗太空舱的实验和CFD空气动力学发现,足以代表火星大气中太空舱的静态系数。

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