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Mars Ascent Vehicle Gross Lift-off Mass Sensitivities for Robotic Mars Sample Return

机译:火星上升车对机器人火星样品返回的总起升质量敏感性

摘要

The Mars ascent vehicle is a critical element of the robotic Mars Sample Return (MSR) mission. The Mars ascent vehicle must be developed to survive a variety of conditions including the trans-Mars journey, descent through the Martian atmosphere and the harsh Martian surface environments while maintaining the ability to deliver its payload to a low Mars orbit. The primary technology challenge of developing the Mars ascent vehicle system is designing for all conditions while ensuring the mass limitations of the entry descent and landing system are not exceeded. The NASA In-Space Propulsion technology project has initiated the development of Mars ascent vehicle technologies with propulsion system performance and launch environments yet to be defined. To support the project s evaluation and development of various technology options the sensitivity of the Mars ascent vehicle gross lift-off mass to engine performance, inert mass, target orbits, and launch conditions has been completed with the results presented herein.
机译:火星上升飞行器是机器人“火星样本返回”(MSR)任务的关键要素。必须开发出火星上升飞行器,使其能够在各种条件下生存,包括穿越火星的旅程,通过火星大气层下降以及恶劣的火星表面环境,同时保持将其有效载荷传递至低火星轨道的能力。开发Mars上升飞行器系统的主要技术挑战是针对所有条件进行设计,同时确保不超过进入下降和着陆系统的质量限制。 NASA太空推进技术项目启动了火星上升飞行器技术的开发,其推进系统性能和发射环境尚未确定。为了支持该项目的评估和各种技术选择的开发,火星上升飞行器的总起升质量对发动机性能,惰性质量,目标轨道和发射条件的敏感性已经完成,此处给出了结果。

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