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首页> 外文期刊>International Journal of Thermal Sciences >General performance characteristics of an irreversible vapour absorption refrigeration system using finite time thermodynamic approach
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General performance characteristics of an irreversible vapour absorption refrigeration system using finite time thermodynamic approach

机译:使用有限时间热力学方法的不可逆蒸气吸收式制冷系统的一般性能特征

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This communication presents finite time thermodynamic analysis of vapour absorption refrigeration system considering both external as well as internal irreversibility. System is considered as consisting of an irreversible heat engine between the generator and absorber and an irreversible refrigerator between the evaporator and condenser. Optimization is made w.r.t. source/sink side heat exchanger areas, source/sink side heat transfer time and heat engine cycle and refrigeration cycle time. An optimal relation between overall coefficient of performance and maximum cooling load is obtained. Two internal irreversibility parameters (say, R{sub}(ΔS) is f°r generator-absorber assembly and R'{sub}(ΔS) is for evaporator-condenser assembly) have been introduced in the analysis, having fractional value for irreversible (real) system while R{sub}(ΔS)=R'{sub}(ΔS)=1.0 corresponds to endoreversible system. A detailed parametric study shows that internal irreversibility parameters have more drastic effect on performance reduction than any other external irreversibility parameter. It is also found that internal irreversibility parameters are being dominant factor for performance reduction but out of these two parameters, internal irreversibility parameter of generator-absorber assembly is more sensitive for performance reduction than the internal irreversibility parameter of evaporator-condenser assembly.
机译:该交流提出了考虑外部和内部不可逆性的蒸气吸收式制冷系统的有限时间热力学分析。该系统被认为由发电机和吸收器之间的不可逆热机以及蒸发器和冷凝器之间的不可逆制冷机组成。进行优化源/汇侧换热面积,源/汇侧传热时间以及热机循环和制冷循环时间。获得了总体性能系数和最大冷却负载之间的最佳关系。分析中引入了两个内部不可逆参数(例如,R {sub}(ΔS)是发生器-吸收器组件,R'{sub}(ΔS)是蒸发器-冷凝器组件),它们具有不可逆分数值(实)系统,而R {sub}(ΔS)= R'{sub}(ΔS)= 1.0对应于内可逆系统。一项详细的参数研究表明,内部不可逆性参数对性能降低的影响比任何其他外部不可逆性参数都大。还发现内部不可逆性参数是降低性能的主要因素,但在这两个参数中,发生器-吸收器组件的内部不可逆性参数对性能降低的敏感度要高于蒸发器-冷凝器组件的内部不可逆性参数。

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