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Modelling of a solar energy driven water desalination system using TRNSYS

机译:使用TRNSYS对太阳能驱动的海水淡化系统进行建模

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The overall broad purpose of this paper is to develop and evaluate a small scale solar humidification dehumidification water desalination system using a graphical tool TRNSYS and assess its thermal behavior. Considering the intense need for the development of alternate technologies for energy deficient and impoverished countries of the world like Pakistan, this model is in particular anticipated for underprivileged communities where pure and uncontaminated drinking water as well as modern technologies are not accessible. The system consists of isolated components for heating, evaporation and condensation, in order to lower the thermal losses. The weather file used was in standard TMY 2 format for Asian data. A flat plate solar collector, humidifier and dehumidifier are to be integrated in an open air open water configuration. The simulations for a water heated cycle revealed that the output water temperature be reliant strongly on the incident solar radiations and inlet water temperature. Collector area and inlet water flow rate also had a considerable impact on productivity. A significant increase in efficiency was observed by using a water storage tank and pre heating the feed water favorably influenced the output.
机译:本文的总体广泛目的是使用图形工具TRNSYS开发和评估小型太阳能加湿除湿水脱盐系统,并评估其热行为。考虑到迫切需要为像巴基斯坦这样的世界能源匮乏和贫困国家开发替代技术,这种模式尤其适用于无法获得纯净无污染饮用水和现代技术的贫困社区。该系统由用于加热,蒸发和冷凝的隔离组件组成,以降低热损失。所使用的气象文件为亚洲数据的标准TMY 2格式。平板太阳能集热器,加湿器和除湿器将集成在露天开放水域中。对水加热循环的模拟表明,输出水温强烈依赖于入射的太阳辐射和进水温度。集热器的面积和进水流速对生产率也有相当大的影响。通过使用储水箱并预热给水对输出功率产生了有利的影响,效率得到了显着提高。

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