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Thermal Analysis and Experimental Validation of Parabolic Trough Collector for Solar Adsorption Refrigerator

机译:太阳能吸附冰箱抛物线槽收集器的热分析及实验验证

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This work presents an algorithm able to simulate the heating of a solar collector throughout the day. The discussed collector is part of a solar adsorption refrigerator, and is used to regenerate the activated carbon contained inside a cylindrical recipient (absorber), which is located in the focal line of a parabolic trough concentrator. The developed algorithm takes into account all the transfer mechanisms when analyzing the heat transfers taking place between the collector’s components and the environment, as well as the transfer mechanisms towards the absorber’s interior. The temperature evolution for the collector’s elements is obtained, and the model is validated by comparing the experimentally measured surface temperature of the absorber with the one determined by the algorithm. The experimental data were gathered from similar collectors in two different scenarios: Santo Domingo (Dominican Republic) and Buenos Aires (Argentina). The model is satisfactorily validated with experimental data.
机译:这项工作介绍了一种能够在整个一天模拟太阳能收集器的加热的算法。所讨论的收集器是太阳能吸附冰箱的一部分,用于再生包含在圆柱形接收器(吸收器)内的活性炭,其位于抛物线槽浓缩器的焦线中。在分析收集器的部件和环境之间进行的热量转移以及朝向吸收器内部的转移机制,考虑到所有传送机制。获得收集器元件的温度演化,通过将吸收器的实验测量的表面温度与由算法确定的施加的实验测量的表面温度进行验证。实验数据从两种不同的参数中收集了类似收集者:Santo Domingo(多米尼加共和国)和布宜诺斯艾利斯(阿根廷)。该模型与实验数据令人满意地验证。

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