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MODELING A NOVEL COMPOSITE ADSORBENT BASED ADSORPTION CHILLER DRIVEN BY SOLAR ENERGY

机译:太阳能驱动的基于新型复合吸附剂的吸附式冷却器的建模

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This paper aims to study the performance of a solar-powered adsorption chiller with a novel composite adsorbent material (silica activated carbon/CaCl_2) operating during some typical months in Hong Kong. Modeling is established to investigate the cooling performance of this adsorption chiller driven by flat-type solar collectors with three different configurations of glaze: 1) single glazed cover; 2) double glazed cover and 3) transparent insulation material (TIM) cover. The simulation results show that the higher the solar collector temperature is, the better the coefficient of performance (COP) and the specific cooling power (SCP) of the adsorption chiller are. It is suggested to select a double glazed collector with a small value of the lumped capacitance for this adsorption chiller. Seasonal effects are discussed in which the solar COP achieves its highest value during autumn. However, the cooling capacities in spring, summer and autumn are similar. All in all, this newly developed composite material as adsorbent used in the adsorption chiller could achieve a mean solar COP of 0.36 and SCP of 94W/kg on a typical summer day of operation.
机译:本文旨在研究在香港一些典型月份使用新型复合吸附材料(二氧化硅活性炭/ CaCl_2)的太阳能吸附式制冷机的性能。建立模型以研究由具有三种不同釉面配置的平板型太阳能集热器驱动的吸附式制冷机的冷却性能:1)单层玻璃盖; 2)双层玻璃盖和3)透明绝缘材料(TIM)盖。仿真结果表明,太阳能集热器温度越高,吸附式制冷机的性能系数(COP)和比制冷量(SCP)越好。建议为该吸附式制冷机选择一个集总电容值较小的双层玻璃集热器。讨论了季节性影响,其中太阳COP在秋季达到最高值。但是,春季,夏季和秋季的制冷量相似。总而言之,这种新开发的复合材料作为吸附式冷却器中的吸附剂,在典型的夏季运行日中,平均太阳能COP可以达到0.36,SCP可以达到94W / kg。

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