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Feasibility of solar absorption air conditioning in Tunisia

机译:突尼斯太阳能吸收式空调的可行性

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Due to the high cost of fossil fuels and the environmental problems caused by the extensive use of air-conditioning systems for both residential and industrial buildings, the use of solar energy to drive cooling cycles becomes attractive since the cooling load is roughly in phase with solar energy availability particularly in Tunisia. In this paper, we present a research project aiming at assessing the feasibility of solar-powered absorption cooling technology under Tunisian conditions. Simulations using the TRNSYS and EES programs with a meteorological year data file containing the weather parameters of Tunis, the capital of Tunisia, were carried out in order to select and size the different components of the solar system to be installed. The optimized system for a typical building of 150 m~2 is composed of a water lithium bromide absorption chiller of a capacity of 11 kW, a 30 m~2 flat plate solar collector area tilted 35° from the horizontal and a 0.8 m~3 hot water storage tank.
机译:由于化石燃料的高成本以及由于在住宅和工业建筑中广泛使用空调系统而引起的环境问题,由于制冷负荷与太阳能大致相同,因此利用太阳能驱动制冷循环变得有吸引力。能源供应,尤其是在突尼斯。在本文中,我们提出了一个研究项目,旨在评估在突尼斯条件下太阳能吸收式冷却技术的可行性。使用TRNSYS和EES程序以及包含突尼斯首都突尼斯天气参数的气象年数据文件进行了模拟,以便选择和确定要安装的太阳系的不同组件。针对150 m〜2的典型建筑的优化系统由容量为11 kW的水溴化锂吸收式制冷机,与水平方向倾斜35°的30 m〜2平板太阳能集热器区域和0.8 m〜3的系统组成热水储罐。

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