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Theoretical Research Of A Silica Gel-water Adsorption Chiller In A Micro Combined Cooling, Heating And Power (cchp) System

机译:微型冷热电联产系统中硅胶水吸附式冷却器的理论研究

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摘要

A novel micro CCHP system, which is based on a two bed silica gel-water adsorption chiller, is constructed in this work. To reveal the chiller characteristic in this system, a transient model of the adsorption chiller is developed. According to the comparison of the simulated results and experimental data, the presented model shows a good performance in predicting the chiller performance, with both stable and variable heat source temperature. With the analysis of simulated results, it is found that the cooling capacity and the coefficient of performance (COP) of the chiller are influenced significantly by the average value and variation rate of electric load, as well as the average value of cooling load. The water tank also shows a great effect on the chiller performance. To get better performance of the chiller, the water tank should be adopted when the electric load is low or its variation rate is positive, and should not be utilized when the electric load is high or its variation rate is negative. A 500 L water tank is recommended in order to get better performance and acceptable start-up time. Furthermore, to get better performance as well as higher security, a cold accumulator should be adopted.
机译:在这项工作中,构造了一种新颖的微型CCHP系统,该系统基于两床硅胶-水吸附式冷却器。为了揭示该系统中的冷却器特性,开发了吸附冷却器的瞬态模型。根据仿真结果与实验数据的比较,在热源温度稳定和变化的情况下,所提出的模型在预测冷却器性能方面均表现出良好的性能。通过对仿真结果的分析,发现冷水机的制冷量和性能系数受电负载的平均值和变化率以及制冷量的平均值的影响很大。水箱对冷却器的性能也有很大的影响。为了获得更好的制冷机性能,当电负载低或其变化率为正时,应采用水箱;当电负载高或其变化率为负时,不应当使用水箱。为了获得更好的性能和可接受的启动时间,建议使用500 L水箱。此外,为了获得更好的性能和更高的安全性,应采用蓄冷器。

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