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Entry, descent and landing vehicle design space exploration for crewed Mars missions

机译:火星任务的进入,下降和着陆车辆设计空间探索

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摘要

With the announcement of the Vision for Space Exploration in 2004, NASA has been preparing plans for a crewed mission to Mars in the next few decades. One challenge associated with crewed missions to the Martian surface is the comparatively large mass of planned surface elements which will require an increase of at least an order of magnitude in the landed mass performance of entry, descent and landing (EDL) vehicles compared to previous successful robotic missions and ones currently planned for the near future. The work presented in this thesis attempts to look at the effect of individual vehicle and mission design parameters on the overall EDL system landed mass performance. For this purpose, a planetary EDL simulation and sensitivity analysis tool has been created which allows for the variation of a number of relevant parameters and provides the user with performance data. To date, the tool has been validated with experimental and simulated data for Mars missions. The tool assumes the use of propulsive means for final descent. Using this tool, a number of sensitivity analyses for different parameters for both the entry phase and the entire EDL profile have been conducted. Major insights gleaned from these include the need for research into propulsive descent safety requirements to prevent over-conservatism in establishing the propulsive descent initiation (PDI) altitude since a high PDI altitude can significantly lower EDL vehicle landed mass performance. Another area of research with the potential to provide significant improvements in performance is structural and thermal technology that reduces the aeroshell mass of the vehicle. Finally, the landed mass performance of a reference EDL vehicle with a spherical forebody and a conical aftbody was also evaluated.
机译:随着2004年《太空探索远景》的宣布,美国宇航局一直在准备在未来几十年内进行载人飞行任务的计划。与载人火星表面执行任务相关的一个挑战是计划的地面要素的质量相对较大,与以前的成功相比,进入,下降和着陆(EDL)车辆的着陆质量性能至少需要增加一个数量级。机器人任务以及目前计划在不久的将来执行的任务。本文提出的工作试图着眼于个别车辆和任务设计参数对整个EDL系统着陆质量性能的影响。为此,已经创建了行星式EDL仿真和灵敏度分析工具,该工具可以更改许多相关参数,并为用户提供性能数据。迄今为止,该工具已通过火星任务的实验和模拟数据进行了验证。该工具假定使用推进装置进行最后下降。使用该工具,已针对进入阶段和整个EDL配置文件的不同参数进行了许多敏感性分析。从中得出的主要见解包括需要研究推进下降安全性要求,以防止在建立推进下降起始(PDI)高度时过度保守,因为高PDI高度会显着降低EDL车辆着陆质量性能。可以显着改善性能的另一个研究领域是结构和热技术,可以减少车辆的机身质量。最后,还评估了具有球形前躯和锥形后躯的参考EDL车辆的着陆质量性能。

著录项

  • 作者

    Khan Zahra;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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