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Performance analysis of an irreversible Brayton heat engine based on ecological coefficient of performance criterion

机译:基于性能生态准则的不可逆布雷顿热机性能分析

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摘要

A performance optimization based on a new ecological criterion called ecological coefficient of performance (ECOP) has been presented for irreversible Brayton heat engine. The considered model includes irreversibilities due to finite rate heat transfer, heat leakage and internal dissipations. The ECOP objective function is defined as the ratio of power output to the loss rate of availability. The optimal performance and design parameters at maximum ECOP conditions are obtained analytically. The effects of major parameters on the general and optimal ecological performances have been investigated. The obtained results based on ECOP criterion are compared with an alternative ecological objective function defined in the literature and the maximum power output conditions, in terms of entropy generation rate, thermal efficiency and power output.
机译:针对不可逆的布雷顿热机,提出了一种基于称为生态性能系数(ECOP)的新生态标准的性能优化。考虑的模型包括由于有限速率的热传递,热泄漏和内部耗散而引起的不可逆性。 ECOP目标函数定义为输出功率与可用性损耗率之比。通过分析获得在最大ECOP条件下的最佳性能和设计参数。研究了主要参数对一般和最佳生态性能的影响。将根据ECOP标准获得的结果与文献中定义的替代生态目标函数以及最大功率输出条件(在熵产生率,热效率和功率输出方面)进行比较。

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