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Thermal test of the insulation structure for LH_2 tank by using the large experimental apparatus

机译:使用大型实验装置对LH_2储罐的隔热结构进行热测试

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Conceptual designs or large mass LH_2 (liquid hydrogen) storage systems, whose capacity is 50, 000 m~3, have been studied in the Japanese hydrogen project, World Energy Network (WE-NET) (K. Fukuda, in; WE-NET Hydrogen Energy Symposium, 1999, P1-P41). This study has concluded that their thermal insulation structures for the huge LH_2 tanks should be developed. Their actual insulation structures comprise not only the insulation material but also reinforced members and joints. To evaluate their thermal performance correctly, a large test specimen including reinforced members and joints will be necessary. After verifying the thermal performance of a developed large experimental apparatus (S. Kamiya, Cryogenics 40 (1) (2000) 35) for measuring the thermal conductance of various insulation structures, we tested two specimens, a vacuum multilayer insulation (MLI) with a glass fiber reinforced plastic (GFRP) support and a vacuum solid insulation (microtherm~?) with joints. The thermal background test for verifying the thermal design of the experimental apparatus showed that the background heat leak is 0.1 W, small enough to satisfy apparatus performance requirement. The thermal conductance measurements of specimens also showed that thermal heat fluxes of MLI with a GFRP support and microtherm~? are 8 and 5.4 W/m~2, respectively.
机译:在日本氢项目世界能源网(WE-NET)(位于福田K.中; WE-NET)中,已经研究了容量为50,000 m〜3的概念设计或大容量LH_2(液氢)存储系统。氢能研讨会,1999,P1-P41)。这项研究得出的结论是,应该为大型LH_2储罐开发隔热结构。它们的实际绝缘结构不仅包括绝缘材料,还包括加强构件和接头。为了正确评估其热性能,将需要一个包括增强构件和接头的大型试样。在验证了用于测量各种绝缘结构热导率的大型实验设备(S. Kamiya,Cryogenics 40(1)(2000)35)的热性能后,我们测试了两个样品,一个真空多层绝缘(MLI),其玻璃纤维增​​强塑料(GFRP)支架和带接头的真空固体绝缘(microtherm?)。用于验证实验设备热设计的热本底测试表明,本底热泄漏为0.1 W,足够满足设备性能要求。样品的热导率测量结果还表明,带有GFRP载体和Microtherm®的MLI的热通量是多少?分别为8和5.4 W / m〜2。

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