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Usefulness analysis on regenerator and heat exchanger in Brayton & inverse Brayton cycles at moderate pressure ratio operation

机译:中压比操作下布雷顿反布雷顿循环中再生器和热交换器的有用性分析

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摘要

A consistent methodology incorporating usefulness of the regenerator and heat exchanger for alternative forms of Brayton & Inverse Brayton cycle compared to the basic Brayton and regenerative Brayton cycles has been presented. An analytical study has been performed to explain why regenerator and heat exchanger might be useless at particular operational conditions. This analysis showed that regenerator and/or heat exchanger of the Brayton & Inverse Brayton cycle should be removed from the service at particular pressure ratio operations. Thermal performances of all unit arrangement were accordingly calculated at the moderate range of compressors' pressure ratios. Analytical and computational findings showed that a particular unit arrangement including a regenerator between the two stages of expansion processes through turbines exhausting to the atmospheric pressure had a better thermal performance, i.e. at least 14% greater than all other unit arrangements, while the huge heat exchanger and second compressor could be eliminated for lower occupation space and start up process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种一致的方法,该方法结合了再生器和换热器的实用性,与基本的布雷顿循环和再生布雷顿循环相比,可用于替代形式的布雷顿逆向布雷顿循环。进行了一项分析研究,以解释为什么在特定的运行条件下,再生器和热交换器可能会变得无用。该分析表明,在特定的压力比操作下,布雷顿和布雷顿反循环的回热器和/或热交换器应从服务中删除。相应地,在适当的压缩机压力比范围内计算了所有单元布置的热性能。分析和计算结果表明,在通过涡轮排放至大气压的膨胀过程的两个阶段之间,包括蓄热器的特定单元布置具有更好的热性能,即比所有其他单元布置大14%,而巨大的热交换器可以省去第二台压缩机,以减少占用空间和启动过程。 (C)2016 Elsevier Ltd.保留所有权利。

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