首页> 外文会议>Cryogenic Engineering Conference >ANALYZING THE USE OF GASEOUS HELIUM AS A PRESSURANT WITH CRYOGENIC PROPELLANTS WITH THERMODYNAMIC VENTING SYSTEM MODELLING AND TEST DATA
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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:用热力学通风系统建模和测试数据用低温推进剂用气态氦气用作压力剂

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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 prevent feed system cavitation, gaseous helium (GHe) is frequently considered as a pressurant. A Thermodynamic Venting System (TVS) is designed to maintain tank pressure during low gravity operations without propellant resettling. Tests were conducted in the Marshall Space Flight Center (MSFC) Multi-purpose Hydrogen Test Bed (MHTB) to evaluate the effects of GHe pressurant on pressure control performance of a TVS with liquid hydrogen (LH2) and nitrogen (LNj) test liquids The TVS used comprises a recirculation pump, a Joule-Thomson (I-T) expansion valve, and a parallel flow concentric tube heat exchanger combined with a longitudinal spray bar. A small amount of liquid extracted from the tank recirculation line was passed through the J-T valve and then through the heat exchanger, extracting thermal energy from the bulk liquid and ullage and 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 were compared with test data of ullage pressure and temperature and bulk liquid saturation pressure and temperature.
机译:冷冻剂是美国宇航局的月球和火星探测计划可行的候选推进剂。以提供足够的质量流系统的发动机和/或防止进料系统的空化,气态氦(GHE)经常认为是加压物质。热力学通风系统(TVS)被设计为保持在不含推进剂重新安置低重力操作箱压力。试验是在马歇尔航天飞行中心(MSFC)多用途氢试验台(MHTB)进行评估GHE压力体的在与液体氢(LH2)一个TVS的压力控制性能和氮(LNJ)测试液体的TVS的影响使用包括一个再循环泵,焦耳 - 汤姆逊(IT)膨胀阀,以及一个平行流同心管换热器具有纵向喷射杆相结合。从罐的再循环线路中抽取出来的少量液体是通过JT阀,然后通过热交换器传递,从散装液体提取热能和缺量并以90填充水平进行从而使压力控制的LH2 / GHE测试%,50%和25%,和LN2 / GHE试验在50%和25%的填充水平下进行。此外,每个试验使用一个指定的罐缺量压力控制带的一维TVS性能程序用来分析和测试数据相关联进行。预测的结果与缺量的压力和温度以及散装液体饱和压力和温度的测试数据进行比较。

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