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Analyzing the Use of Gaseous Helium as a Pressurant with Cryogenic Propellants with Thermodynamic Venting System Modelling and Test Data

机译:利用热力学通风系统建模和测试数据分析气态氦作为低温推进剂的增压剂

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摘要

Cryogens are viable candidate propellants for NASA's Lunar and Mars exploration programs. To provide adequate mass flow to the system's engines and/or to prevent feed system cavitation, gaseous helium (GHe) is frequently considered as a pressurant. During low gravity operations, a Thermodynamic Venting System (TVS) is designed to maintain tank pressure during low gravity operations without propellant resettling. Therefore, a series of tests were conducted in the Multi-purpose Hydrogen Test Bed (MHTB) of Marshall Space Flight Center (MSFC) in order to evaluate the effects of GHe pressurant on pressure control performance of a TVS with liquid hydrogen (LH2) and nitrogen (LN2) as the test liquids. The TVS used in these test series consists of a recirculation pump, Joule-Thomson (J-T) expansion valve, and a parallel flow concentric tube heat exchanger combined with a longitudinal spray bar. Using a small amount of liquid extracted from the tank recirculation line, passing it through the J-T valve, and then through the heat exchanger, thermal energy is extracted from the bulk liquid and ullage thereby enabling pressure control. The LH2/GHe tests were performed at fill levels of 90%, 50%, and 25% and LN2/GHe tests were conducted at fill levels of 50% and 25%. Moreover, each test was conducted with a specified tank ullage pressure control band. A one-dimensional TVS performance program was used to analyze and correlate the test data. Predictions and comparisons with test data of ullage pressure and temperature and bulk liquid saturation pressure and temperature with test data are presented.
机译:低温剂是NASA月球和火星探索计划的可行候选推进剂。为了向系统的发动机提供足够的质量流量和/或防止进料系统气蚀,通常将气态氦(GHe)视为增压剂。在低重力运行过程中,热力学通风系统(TVS)设计为在低重力运行过程中保持油箱压力,而无需推进剂沉降。因此,在马歇尔太空飞行中心(MSFC)的多用途氢气测试台(MHTB)上进行了一系列测试,以评估GHe增压剂对液态氢(LH2)和TVS的压力控制性能的影响。氮气(LN2)作为测试液体。这些测试系列中使用的TVS包括再循环泵,焦耳-汤姆森(J-T)膨胀阀以及与纵向喷洒杆组合的平行流同心管热交换器。使用从储罐再循环管线提取的少量液体,使其通过J-T阀,然后通过热交换器,从散装液体和废料中提取热能,从而实现压力控制。 LH2 / GHe测试在填充水平为90%,50%和25%的情况下进行,LN2 / GHe测试在填充水平为50%和25%的情况下进行。此外,每个测试都是在指定的液位损耗压力控制带下进行的。使用一维TVS性能程序来分析和关联测试数据。给出了与剩余压力和温度以及本体液体饱和压力和温度与测试数据的测试数据的预测和比较。

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