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Experimental study of the water depth effect and the impact of condensers connection in a new desalination system by HDH process, using solar energy

机译:利用太阳能,HDH工艺对水深效应及冷凝器连接对电凝块连接的实验研究

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This work is part of increasing the profitability of a system of sea water desalination, single stage , held at the laboratory scale, using the method of Humidification Dehumidification ( HDH) handset, instantaneous ( shorten up the HDH cycle). This is essentially an experimental approach which consists on studying a new combination of HDH system based on the use of a plate condenser cooled by sea water and the envelope of the system cooled by the ambient air, subsequently, we test the effect of changing the water depth and the impact of condenser connection on the quantity of distilled water. The temperature of the free evaporation surface was also analyzed to determine its effect on the flow rate values of the distillate. This is a closed air system using solar energy and the cooling energy provided by the low temperature of sea water and ambient air. The results justify the feasibility of the proposed system, since we got encouraging results and quite comparable to other desalination systems using solar energy, those results also allow us to understand and predict the characteristics required for a new prototype of this desalination system.
机译:这项工作是提高海水淡化,单级,在实验室规模举行的一个系统的盈利能力,使用加湿除湿(HDH)手机,瞬间(缩短了HDH周期)的方法的一部分。这实质上是一个实验的方法,其包括在研究基础上,采用由海水和由环境空气冷却系统的包络线冷却的板冷凝器HDH系统的新的组合,随后,我们测试换水的效果深度和蒸馏水量电容器连接的影响。自由蒸发表面的温度也被分析以确定其对馏出物的流率值的效果。这是使用太阳能和由海水和环境空气的温度低所提供的冷却能量的封闭空气系统。结果证明所提出的系统的可行性,因为我们得到了令人振奋的成果,相当与使用太阳能等海水淡化系统,这些结果也让我们了解和预测该海水淡化系统的一个新的原型所需的特性。

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