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Thermal Optimization and Assessment of a Long Duration Cryogenic Propellant Depot

机译:长期低温推进剂库的热优化和评估

摘要

A Cryogenic Propellant Depot (CPD) operating in Low Earth Orbit (LEO) could provide many near term benefits to NASA space exploration efforts. These benefits include elongation/extension of spacecraft missions and reduction of launch vehicle up-mass requirements. Some of the challenges include controlling cryogenic propellant evaporation and managing the high costs and long schedules associated with new spacecraft hardware development. This paper describes a conceptual CPD design that is thermally optimized to achieve extremely low propellant boil-off rates. The CPD design is based on existing launch vehicle architecture, and its thermal optimization is achieved using current passive thermal control technology. Results from an integrated thermal model are presented showing that this conceptual CPD design can achieve propellant boil-off rates well under 0.05% per day, even when subjected to the LEO thermal environment.
机译:在低地球轨道(LEO)中运行的低温推进剂仓库(CPD)可以为NASA太空探索工作提供许多近期利益。这些好处包括延长/延长了航天器的飞行任务,并减少了运载火箭的上升质量要求。一些挑战包括控制低温推进剂的蒸发以及管理与新航天器硬件开发相关的高成本和漫长的时间表。本文介绍了一种概念上的CPD设计,该设计经过热优化以实现极低的推进剂蒸发率。 CPD设计基于现有的运载火箭架构,其热优化是使用当前的被动热控制技术实现的。提出的集成热模型结果表明,即使在LEO热环境下,这种概念性CPD设计也可以实现每天不到0.05%的推进剂蒸发率。

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