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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A hybrid energy storage system using compressed air and hydrogen as the energy carrier
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A hybrid energy storage system using compressed air and hydrogen as the energy carrier

机译:一种使用压缩空气和氢作为能量载体的混合能量存储系统

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摘要

In this paper, an innovative concept of an energy storage system that combines the idea of energy storage, through the use of compressed air, and the idea of energy storage, through the use of hydrogen (with its further conversion to synthetic natural gas), has been proposed. The thermal integration of two sub-systems allows for efficient storage of large amounts of energy based on the use of pressure tanks with limited volumes. A thermodynamic assessment of the integrated hybrid system was carried out. For the assumed operation parameters, an energy storage efficiency value of 38.15% was obtained, which means the technology is competitive with intensively developed pure hydrogen energy storage technologies. The results obtained for the hybrid system were compared to the results obtained for three reference systems, each of which uses hydrogen generators. The first is a typical Power-to-H 2 -to-Power system, which integrates hydrogen generators with a fuel cell system. The other two additionally use a compressed air energy storage installation. In the first case the compressed air energy storage system consists of a diabatic system. In the second case the compressed air energy storage system is adiabatic. The article has discussed the disadvantages and advantages of all the analyzed systems. (C) 2020 The Author. Published by Elsevier Ltd.
机译:在本文中,通过使用氢气(进一步转化为合成天然气),通过使用压缩空气和储能的概念来结合能量存储系统的创新概念。已提出。两个子系统的热整合允许基于使用具有有限卷的压力箱的压力箱有效地存储大量能量。进行了集成混合系统的热力学评估。对于假定的操作参数,获得了38.15%的能量存储效率值,这意味着该技术具有强烈开发的纯氢能存储技术竞争。将用于混合系统获得的结果与用于三种参考系统的结果进行比较,每个结果使用氢气发生器。第一是典型的功率到H 2 -To-Power系统,其将氢气发生器与燃料电池系统集成。另外两个另外使用压缩空气能量存储安装。在第一种情况下,压缩空气能量存储系统由糖尿病系统组成。在第二种情况下,压缩空气能量存储系统是绝热的。本文讨论了所有分析系统的缺点和优势。 (c)2020提交人。 elsevier有限公司出版

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