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Mission and design sensitivities for human Mars landers using Hypersonic Inflatable Aerodynamic Decelerators

机译:使用超声波充气空气动力学减速器的人类火星着陆机构的使命与设计敏感性

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摘要

Landing humans on Mars is one of NASA's long term goals. The Evolvable Mars Campaign (EMC) is focused on evaluating architectural trade options to define the capabilities and elements needed for a sustainable human presence on the surface of Mars. The EMC study teams have considered a variety of in-space propulsion options and surface mission options. As we seek to better understand how these choices affect the performance of the lander, this work informs and influences requirements for transportation systems to deliver the landers to Mars and enable these missions. This paper presents the effects of mission and vehicle design options on lander mass and performance. Beginning with Earth launch, options include fairing size assumptions, co-manifesting other elements with the lander, and Earth-Moon vicinity operations. Capturing into Mars orbit using either aerocapture or propulsive capture is assessed. For entry, descent, and landing both storable as well as oxygen and methane propellant combinations are considered, engine thrust level is assessed, and sensitivity to landed payload mass is presented. This paper focuses on lander designs using the Hypersonic Inflatable Aerodynamic Decelerators (HIAD), one of several entry system technologies currently considered for human missions.
机译:在火星上着陆人类是NASA的长期目标之一。该火星演化运动(EMC)是专注于评估建筑贸易选项定义的能力和需要的火星表面上的可持续的人类存在的元素。 EMC的研究小组已经考虑了各种太空推进期权和面任务的选项。当我们寻求更好地理解这些选择如何影响着陆器的性能,这项工作运筹学和交通系统的影响要求交付着陆器到火星和启用这些任务。本文提出的任务和车辆的设计方案上着陆器的质量和性能的影响。地球发射开始,选择包括整流罩尺寸的假设,与各州合作,体现等元素,与地球,月球附近操作。捕获到使用任一大气俘获或捕获推进火星轨道进行评估。进入,下降和着陆两者可存储以及氧气和甲烷推进剂组合被认为,发动机推力水平进行评估,和敏感性,以降落有效载荷质量呈现。本文侧重于着陆器设计采用高超音速空气动力学充气的减速(HIAD),目前被认为对人类的任务数输入系统的技术之一。

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