Solar Cooling: A renewable energy solution

G. Puglisi, G. Vox, A. Kavga, F. Convertino, I. Blanco, E. Schettini
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引用次数: 1

Abstract

A sustainable and environmentally alternative to commonly used air conditioning systems can be the solar cooling system due to the use of renewable and clean energy. Solar absorption systems can be used for greenhouse cooling in areas with high outdoor temperatures and solar radiation levels. These systems take advantage of the simultaneity between the solar energy availability and the greenhouse cooling demand allowing the reduction of conventional electricity and water consumption. This paper presents the results of the application of a solar cooling plant for the climate control of a greenhouse at the University of Bari, Italy. The experimental plant consists of a Mediterranean greenhouse, having a surface of 300 m2, and of a single effect LiBr-H2O absorption chiller fed by evacuated-tube solar collectors. Two different localized systems were chosen for the distribution of cold inside the greenhouse: the first system presents pipes placed centrally on the cultivation vessels; the second consists of pipes in contact with aluminium plates and of a transparent EVA film, used to border an area close to plants. The distribution system of cold with pipes, plate and EVA film provided a slightly higher cooling capacity due to the presence of the plates which increases the ability to dissipate energy.
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太阳能冷却:可再生能源解决方案
由于使用可再生和清洁能源,太阳能冷却系统可以替代常用的空调系统,这是一种可持续和环保的选择。太阳能吸收系统可用于室外温度高和太阳辐射水平高的地区的温室冷却。这些系统利用了太阳能可用性和温室冷却需求之间的同时性,从而减少了传统的电力和水的消耗。本文介绍了太阳能冷却装置在意大利巴里大学温室气候控制中的应用结果。实验工厂包括一个面积为300平方米的地中海温室,以及一个由真空管太阳能集热器供气的单效溴化锂- h2o吸收式制冷机。选择了两种不同的局部系统来分配温室内的冷量:第一种系统是放置在栽培容器中央的管道;第二种由与铝板接触的管道和透明EVA膜组成,用于靠近工厂的区域边界。由管道、板和EVA膜组成的冷分配系统提供了稍高的冷却能力,因为板的存在增加了耗散能量的能力。
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
25
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