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Benefits of in situ propellant utilization for a Mars sample return mission

机译:火星样品返回任务中就地利用推进剂的好处

摘要

Previous Mars rover sample return mission studies have shown a requirement for Titan 4 or STS Space Shuttle launch vehicles to complete a sample return from a single Mars site. These studies have either used terrestrial propellants or considered in situ production of methane and oxygen for the return portion of the mission. Using in situ propellants for the return vehicles reduces the Earth launch mass and allows for a smaller Earth launch vehicle, since the return propellant is not carried from Earth. Carbon monoxide and oxygen (CO/O2) and methane and oxygen (CH4/O2) were investigated as in situ propellants for a Mars sample return mission and the results were compared to a baseline study performed by the Jet Propulsion Laboratory using terrestrial propellants. Capability for increased sample return mass, use of an alternate launch vehicle, and an additional mini-rover as payload were included. CO/O2 and CH4/O2 were found to decrease the baseline Earth launch mass by 13.6 and 9.2 percent, respectively. This resulted in higher payload mass margins for the baseline Atlas 2AS launch vehicle. CO/O2 had the highest mass margin. And because of this, it was not only possible to increase the sample return mass and carry an additional mini-rover, but was also possible to use the smaller Atlas 2A launch vehicle.
机译:先前的火星漫游车样本返回任务研究表明,需要Titan 4或STS航天飞机运载火箭才能从单个火星站点完成样本返回。这些研究要么使用了地面推进剂,要么考虑就地生产甲烷和氧气作为任务的返回部分。对于返回飞行器使用原位推进剂可减少地球发射质量,并允许使用更小的地球发射飞行器,因为返回推进剂不是从地球上带走的。一氧化碳和氧气(CO / O2)以及甲烷和氧气(CH4 / O2)作为火星样品返回任务的原位推进剂进行了研究,并将结果与​​喷气推进实验室使用地面推进剂进行的基线研究进行了比较。包括增加样品返回质量,使用备用运载火箭以及额外的小型流动站作为有效载荷的功能。发现CO / O2和CH4 / O2分别使基线地球发射质量降低了13.6%和9.2%。这导致基线Atlas 2AS运载火箭的有效载荷质量容限更高。 CO / O2的质量余量最高。因此,不仅可以增加样品返回质量并携带额外的小型流动站,而且还可以使用较小的Atlas 2A运载火箭。

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    Wadel Mary F.;

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  • 年度 1993
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