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Thermal performance of a liquid hydrogen tank multilayer insulation system at warm boundary temperatures of 630, 530, and 152 R

机译:液态氢罐多层保温系统在630、530和152 R的热边界温度下的热性能

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摘要

The results are presented of a study conducted to obtain experimental heat transfer data on a liquid hydrogen tank insulated with 34 layers of MLI (multilayer insulation) for warm side boundary temperatures of 630, 530, and 150 R. The MLI system consisted of two blankets, each blanket made up of alternate layers of double silk net (16 layers) and double aluminized Mylar radiation shields (15 layers) contained between two cover sheets of Dacron scrim reinforced Mylar. The insulation system was designed for and installed on a 87.6 in diameter liquid hydrogen tank. Nominal layer density of the insulation blankets is 45 layers/in. The insulation system contained penetrations for structural support, plumbing, and electrical wiring that would be representative of a cryogenic spacecraft. The total steady state heat transfer rates into the test tank for shroud temperatures of 630, 530, 152 R were 164.4, 95.8, and 15.9 BTU/hr respectively. The noninsulation heat leaks into the tank (12 fiberglass support struts, tank plumbing, and instrumentation lines) represent between 13 to 17 pct. of the total heat input. The heat input values would translate to liquid H2 losses of 2.3, 1.3, and 0.2 pct/day, with the tank held at atmospheric pressure.
机译:给出了一项研究结果,以获取在34个MLI(多层绝热层)绝缘的液氢罐上获得的传热数据的实验结果,该侧边温度为630、530和150R。MLI系统由两个毯子组成,每条毯子由交替的双层丝绸网(16层)和双层镀铝的聚酯薄膜辐射屏蔽层(15层)组成,该屏蔽层包含在Dacron稀松布加固的聚酯薄膜的两个覆盖板之间。绝缘系统是为直径87.6的液氢罐设计并安装的。绝缘毯的标称层密度为45层/英寸。绝缘系统包含用于结构支撑,管道和电线的贯穿件,这些贯穿件可代表低温航天器。护罩温度为630、530、152 R时,进入测试箱的总稳态传热速率分别为164.4、95.8和15.9 BTU / hr。进入罐的非绝缘热量泄漏(12根玻璃纤维支撑杆,罐管道和仪表管线)代表13至17 pct。的总热量输入。当罐保持在大气压下时,热输入值将转化为液体H2损失2.3、1.3和0.2 pct /天。

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