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NASA cryocooler technology developments and goals to achieve zero boil-off and to liquefy cryogenic propellants for space exploration

机译:美国宇航局冷冻机技术的技术开发和目标实现零沸腾和液化低温推进剂进行太空探索

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摘要

NASA's interest in human exploration of Mars has driven it to invest in 20 K cryocooler technology to achieve zero boil-off of liquid hydrogen and 90 K cryocooler technology to achieve zero boil-off liquid oxygen or liquid methane as well as to liquefy oxygen or methane that is produced on the surface of Mars. These investments have demonstrated efficiency progress, mass reductions, and integration insights. A history of the application of cryocooler technology to zero boil-off propellant storage is presented. A trade space on distributed cooling is shown, along with the progress of reverse turbo-Brayton cycle cryocoolers, where the specific power and specific mass have dropped, decreasing the mass and power of these cryocoolers. Additionally, the cryocooler technology advancements of recuperators and compressors are described. Finally, NASA's development ideas with respect to zero boil-off technology are discussed.
机译:NASA对MARS勘探的兴趣推动了它的投资于20千克冷冻机技术,以实现液体氢气和90千克乳胶技术的零蒸煮,实现零蒸煮液氧或液体甲烷以及液化氧或甲烷。 这是在火星表面产生的。 这些投资表明了效率进展,大规模减少和整合见解。 介绍了低温冷却器技术在零煮沸推进剂存储的历史。 示出了分布式冷却的贸易空间,以及反向涡轮布线循环冷冻机的进展,特定功率和特定质量已经下降,降低了这些冷冻机的质量和功率。 另外,描述了恢复器和压缩机的低温冷却器技术进步。 最后,讨论了NASA关于零蒸发技术的发展思想。

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