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首页> 外文期刊>International journal of hydrogen energy >Geothermal energy use in absorption precooling for Claude hydrogen liquefaction cycle
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Geothermal energy use in absorption precooling for Claude hydrogen liquefaction cycle

机译:地热能用于克劳德氢气液化循环的吸收预冷

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We propose an integrated system that consists of an ammonia-water absorption refrigeration cycle for the precooling of hydrogen, and the Claude cycle for the liquefaction of hydrogen. Geothermal energy supplies heat to the generator of the absorption system. A liquid geothermal source available at 200 degrees C at a rate of 100 kg/s is considered. The system is analyzed thermodynamically by the first and second laws using appropriate performance parameters. Under realistic operating conditions 39,080 kW heat can be supplied by geothermal water in the absorption refrigeration system. Hydrogen gas can be cooled to -26.9 degrees C at a rate of 29.53 kg/s in the absorption unit. The coefficient of performance (COP) of the ammonia-water refrigeration system is determined to be 0.556 with an exergy efficiency of 67.0%. The COP of the Claude liquefaction system is 0.0120 and its exergy efficiency is 67.3%. For the overall system, the COP and exergy efficiency are 0.162 and 67.9%, respectively. Also, precooling hydrogen gas in an absorption refrigeration cycle powered by geothermal heat decreases the work consumption in the liquefaction process by 25.4%. (c) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:我们提出了一个集成系统,该系统由用于氢气的预冷却的氨水吸收式制冷循环和用于氢气的液化的克劳德循环组成。地热能为吸收系统的发生器提供热量。考虑在200摄氏度下以100 kg / s的速度提供的液态地热源。使用适当的性能参数通过第一定律和第二定律对系统进行热力学分析。在实际运行条件下,吸收式制冷系统中的地热水可提供39,080 kW的热量。氢气可以在吸收单元中以29.53 kg / s的速度冷却到-26.9摄氏度。氨-水制冷系统的性能系数(COP)确定为0.556,火用效率为67.0%。克劳德液化系统的COP为0.0120,其(火用)效率为67.3%。对于整个系统,COP和火用效率分别为0.162%和67.9%。同样,在由地热提供动力的吸收式制冷循环中对氢气进行预冷可将液化过程中的功耗降低25.4%。 (c)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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