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Performance Analysis of a Double-effect Adsorption Refrigeration Cycle with a Silica Gel/Water Working Pair

机译:硅胶/水工作对的双效吸附式制冷循环性能分析

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A numerical investigation of the double-effect adsorption refrigeration cycle is examined in this manuscript. The proposed cycle is based on the cascading adsorption cycle, where condensation heat that is produced in the top cycle is utilized as the driving heat source for the bottom cycle. The results show that the double-effect cycle produces a higher coefficient of performance (COP) as compared to that of the conventional single-stage cycle for driving temperatures between 100 °C and 150 °C in which the average cycle chilled water temperature is fixed at 9 °C. Moreover, the COP of the double-effect cycle is more than twice that of the single-stage cycle when the temperature reaches 130 °C. It is also observed that the adsorbent mass ratio of the high temperature cycle (HTC) to the low temperature cycle (LTC) affects the performance of the double-effect adsorption refrigeration cycle.
机译:本文对双效吸附制冷循环进行了数值研究。提议的循环基于级联吸附循环,其中在顶部循环中产生的冷凝热被用作底部循环的驱动热源。结果表明,与传统的单级循环相比,双效循环在100°C至150°C的驱动温度(固定的平均循环冷冻水温度)下产生了更高的性能系数(COP)在9°C下。而且,当温度达到130°C时,双效循环的COP是单级循环的COP的两倍以上。还观察到高温循环(HTC)与低温循环(LTC)的吸附剂质量比影响双效吸附制冷循环的性能。

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