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Finite-time exergoeconomic performance optimization for a universal steady flow irreversible heat pump model

机译:通用稳定流不可逆热泵模型的有限时间能效经济性能优化

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摘要

The finite-time exergoeconomic performance of a universal steady flow irreversible heat pump cycle model, which consists of two heat-absorbing branches, two heat-releasing branches and two adiabatic branches with the losses of heat transfer, heat leakage and internal irreversibility, is analysed and optimized by using the theory of finite-time thermodynamics. The analytical formulae for the heating load, coefficient of performance (COP) and profit rate function of the irreversible heat pump cycle model are derived. The optimal heating load, COP and profit rate characteristics are obtained by searching the optimal heat conductance distributions of the hot- and cold-side heat exchangers for a fixed total heat exchanger inventory. Moreover, analysis and optimization of the cycle performance are carried out in order to investigate the effects of heat leakage, internal irreversibility and price ratio on the performance of the cycle by using numerical examples. It is shown that the heat leakage changes the profit rate characteristics qualitatively, and internal irreversibility decreases the profit rate of the cycle quantitatively. The performance characteristics of the steady flow irreversible Diesel, Atkinson, Otto, Brayton, Dual, Miller and Carnot heat pump cycles are included in the universal results obtained herein.
机译:分析了由两个吸热分支,两个放热分支和两个绝热分支组成的,具有传热损失,漏热和内部不可逆性的通用稳态流不可逆热泵循环模型的有限时间能效性能。并使用有限时间热力学理论进行了优化。推导了不可逆热泵循环模型的热负荷,性能系数(COP)和利润率函数的解析公式。通过搜索固定侧总热交换器存量的热侧和冷侧热交换器的最佳热导分布,可以获得最佳的热负荷,COP和利润率特征。此外,进行了循环性能的分析和优化,以通过数值示例研究热泄漏,内部不可逆性和价格比对循环性能的影响。结果表明,热泄漏定性改变了利润率特征,内部不可逆性定量降低了循环的利润率。恒定流量不可逆柴油,阿特金森,奥托,布雷顿,双重,米勒和卡诺热泵循环的性能特征包括在本文获得的通用结果中。

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