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Simulated Propellant Loading System: A testbed for launch systems research and development

机译:模拟推进剂装载系统:用于发射系统研究和开发的测试平台

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Energy-efficient storage, transfer and use of cryogens and cryogenic propellants on Earth and in space have a direct impact on NASA's government and commercial programs. Research and development on thermal insulation, propellant servicing, cryogenic components, material properties, and sensing technologies provides industry, government and research institutions with the cross-cutting technologies to manage low-temperature applications. A real world application of several cryogenic systems includes a launching platform that can support liquid propellant transfer from storage to launch vehicles. Current launching platforms serve as test beds for rocket engines, launching space missions, and supporting propellant transfer for several applications. The research and development of the launching platform system itself is a need for industry, government and research institutions to allow space for improvement and innovation for future launch systems. Under the direction of the Cryogenics Testing Laboratory (CTL) at the Kennedy Space Center, an experimental simulated launch cryogenic propellant delivery system has been developed to simulate propellant loading systems. In addition, it provides the capability of supporting the testing of new technologies with the goal of improve and innovate the launch pad systems that will support future space exploration missions.
机译:在地球上和在太空中,制冷剂和低温推进剂的高能效存储,转移和使用直接影响着NASA的政府和商业计划。隔热,推进剂服务,低温部件,材料特性和传感技术的研究与开发为工业,政府和研究机构提供了跨领域技术,以管理低温应用。几个低温系统在现实世界中的应用包括一个发射平台,该平台可以支持液体推进剂从存储到运载工具的转移。当前的发射平台可作为火箭发动机的测试平台,发射太空任务并支持多种应用的推进剂转移。发射平台系统本身的研发是行业,政府和研究机构的需求,以便为未来的发射系统留出改进和创新的空间。在肯尼迪航天中心的低温测试实验室(CTL)的指导下,已开发了一个实验性模拟发射低温推进剂输送系统,以模拟推进剂装载系统。此外,它还提供了支持新技术测试的功能,目的是改进和创新将支持未来太空探索任务的发射台系统。

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