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A parametric study on exergetic sustainability aspects of high-pressure hydrogen gas compression

机译:高压氢气压缩的能量可持续性方面的参数研究

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This paper presents a parametric study on exergetic sustainability aspects of high-pressure-hydrogen gas compression process in terms of exergy. In this regard, a single stage, two-stage, three-stage and four-stage-hydrogen gas compression processes have been considered to make a parametric evaluation in terms of the exergetic sustainability parameters including i) exergetic efficiency, ii) waste exergy ratio, iii) exergy recoverability ratio, iv) exergy destruction ratio, v) environmental effect factor, vi) exergetic sustainability index. Here, hydrogen is assumed to be a real gas because of higher pressures, and therefore, its compressibility factor is taken into account thorough the calculations. Accordingly, it is noticed that increasing stage number (ranging 1 to 4) and hydrogen gas inlet pressure (from 1 to 200 bar) decrease waste exergy ratio (from 0.853 to 0.058) and environmental effect factor (from 5.789 to 0.061) while going up exergetic sustainability index (from 0.173 to 16.337). However, increasing compressor-outlet pressure of hydrogen gas (ranging from 200 to 900 bar) reduces exergetic sustainability index (from 7.472 to 1.069) while going up waste exergy ratio (from 0.118 to 0.483), exergy destruction ratio (from 0.089 to 0.253), environmental effect factor (from 0.134 to 0.936), and exergy recoverability ratio (from 0.029 to 0.230). Copyright (C) 2016, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文就火用氢氢气压缩过程的能量可持续性方面进行了参数研究。在这方面,已经考虑了单阶段,两阶段,三阶段和四阶段的氢气压缩过程,以根据能持续性参数进行参数评估,这些参数包括:i)能量效率; ii)废物能值比,iii)火用可回收率,iv)火用破坏率,v)环境影响因子,vi)充满活力的可持续性指数。在此,由于较高的压力,氢气被认为是一种真实的气体,因此,在计算时会考虑到其压缩系数。因此,应注意,随着级数的增加(范围为1至4)和氢气入口压力(范围为1至200 bar)的增加,废物的火用率(范围为0.853至0.058)和环境影响因子(范围为5.789至0.061)会降低。充满活力的可持续性指数(从0.173到16.337)。但是,增加氢气的压缩机出口压力(范围从200 bar到900 bar)会降低能量的可持续性指数(从7.472到1.069),同时废物的火用比(从0.118到0.483),火用破坏比(从0.089到0.253) ,环境影响因子(从0.134到0.936)和火用可回收率(从0.029到0.230)。 Hydrogen Energy Publications,LLC(C)2016版权所有。由Elsevier Ltd.出版。保留所有权利。

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