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Finite time exergoeconomic performance for six endoreversible heat engine cycles: Unified description

机译:六个可逆热机循环的有限时间人体工程学性能:统一描述

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摘要

The operation of a universal steady flow endoreversible heat engine cycle model consisting of two constant thermal-capacity heating branches, a constant thermal-capacity cooling branch and two adiabatic branches is viewed as a production process with exergy as its output. The finite time exergoeconomic performance optimization of the universal endoreversible heat engine cycle is investigated by taking profit optimization criterion as the objective. The analytical formulae for power, efficiency and profit rate function of the universal endoreversible heat engine cycle with heat resistance loss are derived. The focus of this paper is to search the compromised optimization between economics (profit) and the utilization factor (efficiency) for endoreversible cycles. Moreover, analysis and optimization of the model are carried out in order to investigate the effect of cycle process on the performance of the universal endoreversible heat engine cycle using numerical examples. The results obtained herein include the performance characteristics of six endoreversible heat engines, including Carnot, Diesel, Otto, Atkinson, Brayton and Dual cycles.
机译:由两个恒定热容量加热分支,一个恒定热容量冷却分支和两个绝热分支组成的通用稳态流内可逆热机循环模型的运行被视为生产过程,其输出为火用。以利润优化准则为目标,研究了通用内可逆热机循环的有限时间人体工学性能优化。推导了具有热阻损失的通用内可逆热机循环的功率,效率和利润率函数的解析公式。本文的重点是在内可逆循环中寻找经济学(利润)和利用率(效率)之间的折衷优化。此外,进行了模型的分析和优化,以使用数值示例研究循环过程对通用内可逆热机循环性能的影响。本文获得的结果包括六个内可逆热机的性能特征,包括卡诺,柴油,奥托,阿特金森,布雷顿和双循环。

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