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Energy and exergy analysis of an environmentally-friendly hybrid absorption/recompression refrigeration system

机译:环保型混合吸收/压缩制冷系统的能量和火用分析

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This research amplifies an environmentally-friendly refrigeration system which works by the combination of an ideal vapor compression system with a single-effect absorption system. At this hybrid absorption/recompression system, a booster compressor has implemented between the generator and condenser of absorption system and by adjusting pressure ratio tried to reach to the absolute heat transfer between generator and condenser coils in order to improve the efficiency of system and avoid the heat dissipation in condenser. This system has some advantages such as being environmentally-friendly, removing the need for the bulky condenser, and having about four-fold more efficiency than conventional absorption system. The objective of current study is to accommodate a quantitative description of the hybrid system to reach the optimum matching temperature of the generator, condenser, and evaporator. Furthermore, irreversibility and exergy destruction for different components of the system have been calculated and demonstrated that maximum exergy destruction occurs at condenser and generator. It is concluded that in generator temperature of 60 degrees C for the hybrid system, coefficient of performance becomes maximum (4.4) and the total exergy destruction is minimum. Non-crystallization working range of the hybrid system occurs at low generator temperature in comparison with single-effect absorption system.
机译:这项研究扩大了一种环境友好型制冷系统,该系统通过将理想的蒸汽压缩系统与单效吸收系统结合使用而工作。在该混合式吸收/压缩系统中,在吸收系统的发电机和冷凝器之间安装了增压压缩机,并通过调整压力比试图达到发电机和冷凝器盘管之间的绝对传热,以提高系统效率并避免冷凝器中的散热。该系统具有一些优点,例如对环境友好,无需笨重的冷凝器,并且效率是传统吸收系统的四倍。当前研究的目的是对混合系统进行定量描述,以达到发电机,冷凝器和蒸发器的最佳匹配温度。此外,已计算出系统不同组件的不可逆性和火用破坏,并证明最大的火用破坏发生在冷凝器和发电机上。结论是,在混合系统的发电机温度为60摄氏度的情况下,性能系数最大(4.4),总火用破坏最小。与单效吸收系统相比,混合系统的非结晶工作范围发生在发电机温度较低的情况下。

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