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Comparison Between Conventional Design and Cathode Gas Recirculation Design of a Direct-Syngas Solid Oxide Fuel Cell–Gas Turbine Hybrid Systems Part I: Design Performance

机译:直接合成气固体氧化物燃料电池-燃气轮机混合系统的常规设计和阴极气体再循环设计的比较第一部分:设计性能

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摘要

In this paper, a conventional SOFC–GT hybrid system and a SOFC–GT hybrid system with cathode gas recirculation system fueled with syngas as the main source of energy were analyzed and their performances were compared. In the conventional SOFC–GT hybrid system, the incoming air to the cathode was heated at air recuperator and air preheater to meet the required cathode inlet temperature. In the SOFC–GT hybrid system with cathode gas recirculation, besides air recuperator and air preheater, the recirculation of the cathode exhaust gas was also used to meet the required cathode inlet temperature. The system performances have been analyzed by means of models developed with the computer program Cycle–Tempo. A complete model of the SOFC–GT hybrid system with these two configurations evaluated in terms of energy and exergy efficiencies and their performance characteristics were compared. Simulation results show that the electrical energy and exergy efficiencies achieved in the cathode gas recirculation plant (64.76% and 66.28%, respectively) are significantly higher than those obtained in the conventional plant (54.53% and 55.8%). Article History: Received Feb 23rd 2017; Received in revised form May 26th 2017; Accepted June 1st 2017; Available onlineHow to Cite This Article: Azami, V, and Yari, M. (2017) Comparison between conventional design and cathode gas recirculation design of a direct-syngas solid oxide fuel cell–gas turbine hybrid systems part I: Design performance. International Journal of Renewable Energy Development, 6(2), 127-136.https://doi.org/10.14710/ijred.6.2.127-136
机译:在本文中,分析了传统的SOFC-GT混合系统和以合成气为主要能源的阴极气体再循环系统的SOFC-GT混合系统,并对其性能进行了比较。在常规的SOFC-GT混合系统中,进入阴极的空气在空气换热器和空气预热器中加热,以满足所需的阴极入口温度。在带有阴极气体再循环的SOFC-GT混合系统中,除了空气换热器和空气预热器外,还使用了阴极废气的再循环来满足所需的阴极入口温度。系统性能已通过使用计算机程序Cycle–Tempo开发的模型进行了分析。比较了具有这两种配置的SOFC-GT混合动力系统的完整模型,并根据能量和火用效率对其性能进行了评估。仿真结果表明,在阴极气体再循环装置中获得的电能和火用效率分别为64.76%和66.28%,显着高于传统装置中获得的电能和火用效率(54.53%和55.8%)。文章记录:2017年2月23日收到;于2017年5月26日收到修订版; 2017年6月1日接受;如何在线引用本文:Azami,V和Yari,M.(2017)直接合成气固体氧化物燃料电池-燃气轮机混合系统的常规设计和阴极气体再循环设计之间的比较第一部分:设计性能。国际可再生​​能源发展杂志,6(2),127-136.https://doi.org/10.14710/ijred.6.2.127-136

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    Azami, Vahid; Yari, Mortaza;

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