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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Modeling of an intermittent solar absorption refrigeration system operating with ammonia-lithium nitrate mixture
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Modeling of an intermittent solar absorption refrigeration system operating with ammonia-lithium nitrate mixture

机译:氨-硝酸锂混合物间歇性太阳吸收制冷系统的建模

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The theoretical performance of an intermittent absorption refrigeration system operating with ammonia-lithium nitrate mixture is presented. The analysis was done for representative days of each season of 2001. Meteorological data were taken from a local meteorological station installed in the Energy Research Centre of the National University of Mexico in Temixco, Morelos, Mexico. The system consists of a generator-absorber, a condenser, a valve and an evaporator. A compound parabolic concentrator (CPC) with a glass cover, operates as the generator-absorber of the cooling system. Since lithium nitrate does not evaporate during the generation, it is not necessary to use a rectifier. The theoretical efficiencies of the CPC varied from 0.78 to 0.33 depending on the time of the day and the season. Also, the results showed that with the proposed system it is possible to produce Lip to 11.8kg of ice at generation temperatures around 120degreesC and condensation temperatures between 40degreesC and 44degreesC. These temperatures allow the system to be chilled with air or water. The overall efficiencies of the systems were between 0.15 and 0.4 depending on the generation and condenser temperatures. The efficiencies are satisfactory considering the simplicity of the system. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 7]
机译:介绍了氨-硝酸锂混合物间歇吸收式制冷系统的理论性能。分析是针对2001年每个季节的代表天进行的。气象数据来自安装在墨西哥莫雷洛斯州特米西科市墨西哥国立大学能源研究中心的当地气象站。该系统由吸收器,冷凝器,阀门和蒸发器组成。带玻璃盖的复合抛物线浓缩器(CPC)用作冷却系统的吸收器。由于硝酸锂在生成过程中不会蒸发,因此无需使用整流器。 CPC的理论效率取决于一天中的时间和季节,从0.78到0.33不等。而且,结果表明,使用所提出的系统,可以在120摄氏度左右的产生温度和40摄氏度至44摄氏度的冷凝温度下生产11.8千克冰的Lip。这些温度使系统可以用空气或水冷却。系统的总效率在0.15和0.4之间,具体取决于发电和冷凝器温度。考虑到系统的简单性,效率令人满意。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:7]

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