Exergy analysis and experimental study of heat pump systems

E. Bilgen, H. Takahashi
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引用次数: 68

Abstract

Exergy analysis of heat pump—air conditioner systems has been carried out. The irreversibilities due to heat transfer and friction have been considered. The coefficient of performance based on the first law of thermodynamics as a function of various parameters, their optimum values, and the efficiency and coefficient of performance based on exergy analysis have been derived. Based on the exergy analysis, a simulation program has been developed to simulate and evaluate experimental systems. The simulation of a domestic heat pump—air conditioner of 959 W nominal power (Matsushita room air conditioner model CS-XG28M) is then carried out using experimental data. It is found that COP based on the first law varies from 7.40 to 3.85 and the exergy efficiency from 0.37 to 0.25 both a decreasing function of heating or cooling load. The exergy destructions in various components are determined for further study and improvement of its performance.

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热泵系统的火用分析与实验研究
对热泵-空调系统进行了火用分析。考虑了传热和摩擦引起的不可逆性。根据热力学第一定律导出了各参数的性能系数及其最优值,并根据火用分析导出了效率和性能系数。在火用分析的基础上,开发了仿真程序,对实验系统进行了仿真和评价。然后利用实验数据对标称功率为959 W的家用热泵空调(松下空调型号CS-XG28M)进行了仿真。结果表明,基于第一定律的COP变化范围为7.40 ~ 3.85,火用效率变化范围为0.37 ~ 0.25,两者都是热负荷和冷负荷的递减函数。为进一步研究和改进其性能,确定了各部件的火用破坏量。
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Author index Announcement Some thermodynamic remarks on non-equilibrium fluid streams The exergy flux of radiative heat transfer for the special case of blackbody radiation Work and entropy production aspects of irreversible processes in closed and steady-state open systems
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