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Impact of three different enhancing mass transfer operating characteristics on a solar adsorption refrigeration system with compound parabolic concentrator

机译:三种不同的强化传质操作特性对带复合抛物面聚光器的太阳能吸附制冷系统的影响

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摘要

An adsorption refrigeration system using a compound parabolic concentrator adsorber and an enhanced mass transfer method can improve the system performance. However, different operating modes and different methods of mass transfer enhancement within the system affect the performance heavily. The work compares system performances with four operating modes: three different enhanced mass transfer modes and the natural mass transfer mode. Comparative experiments are conducted under an indoor solar simulator scenario. The different performance parameters were compared, and the results showed that the system performance in all the enhanced mass transfer modes, i.e., mode 1 (one pump with one condenser), mode 2 (one pump with two condensers) and mode 3 (two pumps with two condensers), was higher than that of natural mass transfer mode (no pump with one condenser). The quantity of desorbed refrigerant increased by at least 11.8%, 19.0% and 17.1%, and the coefficient of performance increased by at least 10.0%, 18.4% and 15.8% or enhanced mass transfer modes 1, 2 and 3, respectively, compared with those of the natural mass transfer mode. The results also showed that mode 2 yielded the optimal performance, with the lowest system pressure and highest refrigerant desorption among the three enhanced mass transfer modes. (c) 2020 Elsevier Ltd. All rights reserved.
机译:使用复合抛物线浓缩器吸收器和增强的传质方法的吸收式制冷系统可以提高系统性能。但是,系统中不同的操作模式和不同的传质增强方法会严重影响性能。这项工作将系统性能与四种操作模式进行了比较:三种不同的增强传质模式和自然传质模式。在室内太阳模拟器的情况下进行了对比实验。比较了不同的性能参数,结果表明,系统在所有增强的传质模式下的性能,即模式1(一台泵带一个冷凝器),模式2(一台泵带两个冷凝器)和模式3(两台泵) (带有两个冷凝器)比自然传质模式(没有带一个冷凝器的泵)要高。与之相比,解吸制冷剂的量分别增加了至少11.8%,19.0%和17.1%,并且性能系数分别增加了至少10.0%,18.4%和15.8%,或者增强了传质模式1、2和3。自然传质模式的那些。结果还表明,在三种增强的传质模式中,模式2产生了最佳性能,系统压力最低,制冷剂解吸率最高。 (c)2020 Elsevier Ltd.保留所有权利。

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