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Thermodynamic performance analysis and optimization of DMC (Dual Miller Cycle) cogeneration system by considering exergetic performance coefficient and total exergy output criteria

机译:考虑高能性能系数和总火用输出标准的DMC(双米勒循环)热电联产系统的热力学性能分析和优化

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摘要

Miller cycle engines are one of the popular engine concepts that are available for improving performance, reducing fuel consumption and NO emissions. There are many research studies that investigated the modification of existing conventional engines for operation on a Miller cycle. In this context, a comparative performance analysis and optimization based on exergetic performance criterion, total exergy output and exergy efficiency has been carried out for an irreversible Dual Miller Cycle cogeneration system having finite-rate of heat transfer, heat leak and internal irreversibilities. The EPC (Exergetic Performance Coefficient) criterion defined as the ratio of total exergy output to the loss rate of availability. Performance analysis has been also extended to the Otto-Miller and Diesel-Miller cogeneration cycles which may be considered as two special cases of the Dual Miller cycle. The effect of the design parameters such as compression ratio, pressure ratio, cut-off ratio, Miller cycle ratio, heat consumer temperature ratio, allocation ratio and the ratio of power to heat consumed have also been investigated. The results obtained from this paper will provide guidance for the design of Dual Miller Cycle cogeneration system and can be used for selection of optimal design parameters. (C) 2015 Published by Elsevier Ltd.
机译:米勒循环发动机是流行的发动机概念之一,可用于提高性能,减少燃油消耗和减少NO排放。有许多研究对用于米勒循环的现有常规发动机的改进进行了研究。在这种情况下,已经对具有有限速率的热传递,热泄漏和内部不可逆性的不可逆的双米勒循环热电联产系统进行了基于能效标准,总火用输出和火用效率的比较性能分析和优化。 EPC(运动绩效系数)标准定义为总火用输出与可用性损失率之比。性能分析也已扩展到Otto-Miller和Diesel-Miller热电联产循环,可以将其视为Dual Miller循环的两种特殊情况。还研究了诸如压缩比,压力比,截止比,米勒循环比,热消耗温度比,分配比以及功率与热量消耗比之类的设计参数的影响。从本文获得的结果将为Dual Miller Cycle热电联产系统的设计提供指导,并可用于选择最佳设计参数。 (C)2015年由Elsevier Ltd.出版

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