Heating load, COP, exergy loss rate, exergy output rate and ecological analyses and optimisations for irreversible universal steady flow variable temperature heat reservoir heat pump cycle model

被引:8
|
作者
Feng, H. J. [1 ]
Chen, L. G. [1 ]
Sun, F. R. [1 ]
机构
[1] Naval Univ Engn, Postgrad Sch, Wuhan 430033, Peoples R China
基金
中国国家自然科学基金;
关键词
Finite time thermodynamics; Exergy; Ecological function; Irreversible universal heat pump cycle; Internal irreversibility; Optimal heat capacity rate matching; ENTROPY GENERATION MINIMIZATION; PERFORMANCE ECOP OPTIMIZATION; TRANSFER LAW; THERMOECONOMIC OPTIMIZATION; THERMODYNAMIC OPTIMIZATION; ENGINE; COEFFICIENT; EFFICIENCY; POWER; CRITERION;
D O I
10.1179/014426011X12968328625676
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The performance of an irreversible universal steady flow heat pump cycle model with variable temperature heat reservoirs is analysed and optimised by using finite time thermodynamics. The universal heat pump cycle consists of two heat absorbing branches, two heat releasing branches and two irreversible adiabatic branches, with the losses of heat resistance and internal irreversibility. Expressions of heating load, coefficient of performance (COP), exergy output rate, exergy loss rate and ecological function of Brayton, Otto, Diesel, Atkinson, Dual, Miller and Carnot heat pump cycles are derived. There exists an optimal heat conductance distribution and an optimal thermal capacity rate matching between the working fluid and heat reservoir which leads to maximum heating load, maximum exergy output rate and maximum ecological function respectively. Performance comparisons among heating load, COP, exergy output rate, exergy loss rate and ecological function objectives are carried out. The effects of the internal irreversibility, heat capacity ratio of the heat reservoirs and inlet heating fluid temperature of the cold side heat reservoir on the optimal performances of the universal heat pump cycle are discussed. The results obtained include the performance characteristics of endoreversible and irreversible, constant and variable temperature heat reservoir steady flow Brayton, Otto, Diesel, Atkinson, Dual, Miller and Carnot heat pump cycles.
引用
收藏
页码:113 / 122
页数:10
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