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Ground operations demonstration unit for liquid hydrogen initial test results

机译:液体氢初始测试结果的地面运行演示单元

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NASA operations for handling cryogens in ground support equipment have not changed substantially in 50 years, despite major technology advances in the field of cryogenics. NASA loses approximately 50% of the hydrogen purchased because of a continuous heat leak into ground and flight vessels, transient chill down of warm cryogenic equipment liquid bleeds, and vent losses. NASA Kennedy Space Center (KSC) needs to develop energy-efficient cryogenic ground systems to minimize propellant losses, simplify operations, and reduce cost associated with hydrogen usage. The GODU LH2 project has designed, assembled, and started testing of a prototype storage and distribution system for liquid hydrogen that represents an advanced end-to-end cryogenic propellant system for a ground launch complex. The project has multiple objectives including zero loss storage and transfer, liquefaction of gaseous hydrogen, and densification of liquid hydrogen. The system is unique because it uses an integrated refrigeration and storage system (IRAS) to control the state of the fluid. This paper will present and discuss the results of the initial phase of testing of the GODU LH2 system.
机译:尽管在低温技术领域的主要技术进步,但是在地支撑设备中处理地面支撑设备中冷冻机的操作尚未大幅度变化。美国宇航局由于持续热泄漏到地面和飞行船舶,瞬态寒冷的低温设备液体流血和排出损失,NASA损失了大约50%的氢气。美国宇航局肯尼迪航天中心(KSC)需要开发节能低温接地系统,以最大限度地减少推进剂损失,简化操作,并降低与氢气使用相关的成本。 Godu LH2项目设计了对液体氢原型储存和分配系统的设计,组装和开始测试,该氢气氢气代表了用于地面发射复合物的先进端到端低温推进剂系统。该项目具有多种目标,包括零损失储存和转移,气态氢的液化,以及液态氢的致密化。该系统是独一无二的,因为它使用集成的制冷和存储系统(IRA)来控制流体的状态。本文将展示并讨论GODU LH2系统的初始测试阶段的结果。

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