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A Survey of Supersonic Retropropulsion Technology for Mars Entry, Descent, and Landing

机译:火星入口,下降和降落的超音速迁移技术调查

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This paper presents a literature survey on supersonic retropropulsion technology as it applies to Mars entry, descent, and landing (EDL). The relevance of this technology to the feasibility of Mars EDL is shown to increase with ballistic coefficient to the point that it is likely required for human Mars exploration. The use of retropropulsion to decelerate an entry vehicle from hypersonic or supersonic conditions to a subsonic velocity is the primary focus of this review. Discussed are systems-level studies, general flowfield characteristics, static aerodynamics, vehicle and flowfield stability considerations, and aerothermodynamics. The experimental and computational approaches used to develop retropropulsion technology are also reviewed. Finally, the applicability and limitations of the existing literature and current state-of-the-art computational tools to future missions are discussed in the context of human and robotic Mars exploration.
机译:本文提出了对Supersonic Retropulion技术的文献调查,因为它适用于火星入口,下降和降落(EDL)。这项技术与火星EDL的可行性的相关性被证明与弹道系数增加到人类火星勘探所需的指出。使用重新脉冲脉冲使进入车辆从超音速或超声波条件减速到亚音速度的主要焦点。讨论的是系统级研究,通用流域特征,静态空气动力学,车辆和流场稳定性考虑,以及空气流体动力学。还综述了用于开发迁移技术的实验和计算方法。最后,在人类和机器人火星勘探的背景下讨论了现有文献和当前最先进的计算工具对未来任务的适用性和局限。

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