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Hydrogen refueling process from the buffer and the cascade storage banks to HV cylinder

机译:从缓冲器和级联存储库到HV缸的加氢过程

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The focus of this research is on refueling process from a buffer and a cascade storage bank. A thermodynamic analysis is developed to investigate the filling process of fuel transmission from a storage bank to hydrogen cylinder. Refueling Process from Buffer and Cascade Storage Banks is the subject of this research. Filling the hydrogen cylinder to the required final condition is influenced by the volume and pressure of storage bank. For both buffer and cascade storage banks, ambient temperature is also an important parameter that affects the initial condition, the final condition and the refueling process. Comparison of buffer and cascade storage banks showed that refueling time using buffer storage bank is 200 s less than the cascade storage bank. However, the energy required for gas storage is higher in buffer storage system. As shown by the study, reduction in the final temperature of the filling process can be achieved by controlling the ambient temperature, the initial pressure and the fuel charging rate. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究的重点是从缓冲区和级联存储库进行加油过程。进行了热力学分析,以研究燃料从存储库传输到氢气瓶的填充过程。缓冲和串级存储库的加油过程是本研究的主题。将氢气瓶加注到所需的最终条件受存储库的体积和压力影响。对于缓冲存储库和级联存储库而言,环境温度也是影响初始条件,最终条件和加油过程的重要参数。缓冲区和级联存储库的比较表明,使用缓冲区存储组的加油时间比级联存储组少200 s。但是,在缓冲存储系统中,气体存储所需的能量较高。如研究所示,可以通过控制环境温度,初始压力和燃料填充率来降低加油过程的最终温度。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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