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A unified description of finite time exergoeconomic performance for seven typical irreversible heat-engine cycles

机译:七个典型不可逆热机循环有限时间人体工学性能的统一描述

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Finite time exergoeconomic performance optimization of a universal irreversible heat-engine cycle model, which consists of two constant thermal-capacity heating branches, two constant thermal-capacity cooling branches and two adiabatic branches, is investigated by taking the profit rate criterion as the optimization objective. The analytical formulae for power, efficiency and profit rate function of the universal irreversible heat-engine cycle model with the losses of heat transfer, heat leakage and internal irreversibility are derived. The focus of this article is to search the compromised optimization between economics (profit rate) and the energy utilization factor (efficiency) for irreversible cycles. Moreover, analysis and optimization of the model are carried out in order to investigate the effects of these losses and cycle process on the performance of the universal irreversible heat-engine cycle model using numerical examples. The results obtained herein include the performance characteristics of seven typical irreversible heat engines, including Carnot, Diesel, Otto, Atkinson, Brayton, Dual and Miller cycles.
机译:以利润率准则为优化目标,研究了由两个恒定热容量供热分支,两个恒定热容量供冷分支和两个绝热分支组成的通用不可逆热机循环模型的有限时间人体工学性能优化。 。推导了通用不可逆热机循环模型的热,损失和内部不可逆性的功率,效率和利润率函数的解析公式。本文的重点是在不可逆循环中寻找经济学(利润率)和能源利用因子(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这些损失和循环过程对通用不可逆热机循环模型性能的影响。本文获得的结果包括七个典型的不可逆热机的性能特征,包括卡诺,柴油,奥托,阿特金森,布雷顿,双重和米勒循环。

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