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Chemical and Solar Electric Propulsion Systems Analyses for Mars Sample Return Missions

机译:化学和太阳能电力推进系统对火星样本返回任务的分析

摘要

Conceptual in-space transfer stages, including those utilizing solar electric propulsion, chemical propulsion, and chemical propulsion with aerobraking or aerocapture assist at Mars, were evaluated. Roundtrip Mars sample return mission vehicles were analyzed to determine how specific system technology selections influence payload delivery capability. Results show how specific engine, thruster, propellant, capture mode, trip time and launch vehicle technology choices would contribute to increasing payload or decreasing the size of the required launch vehicles. Heliocentric low-thrust trajectory analyses for Solar Electric Transfer were generated with the SEPTOP code.
机译:评估了概念性的空间转移阶段,包括利用火星上的太阳能推进,化学推进和航空制动或航空辅助的化学推进的阶段。分析了往返火星样本返回任务车辆,以确定特定系统技术的选择如何影响有效载荷的传递能力。结果表明,具体的发动机,推进器,推进剂,捕获模式,跳闸时间和运载火箭技术选择如何有助于增加有效载荷或减小所需运载火箭的尺寸。利用SEPTOP代码生成了对太阳电传递的日心低推力轨迹分析。

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