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Sustainable potable water production using a solar still with photovoltaic modules-AC heater

机译:使用带有光伏模块的太阳能蒸馏器-交流加热器实现可持续的饮用水生产

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Solar energy as a sustainable energy source can be harnessed to produce potable water using solar stills. In this work, effort was made to evaluate the performance of a double slope solar still integrated with a 500W heater to produce potable water. The heater was powered by six photovoltaic modules, which can produce 1.5KWp and then connected to four batteries with capacity of 150Ah each. The experiments were conducted over several days in the tropical climate of Malaysia. A black painted steel trough with length 90cm, width 45cm, and depth 8cm was used as the basin of the glass covered double slope solar still. A comparison of the cumulative water production between the conventional solar still (CSS) and solar still with PV-Heater (CSSPVH) was done. The CSSPVH was found to be more effective; producing about six times the amount of water produced by the CSS. Mathematical models derived based on energy balance studies of CSSPVH, were used to carry out simulations to verify the experimental findings. The energy balance equations of condensing cover and the basin water of CSSPVH were developed as well. A good agreement was found between numerical and experimental productivities of CSSPVH. An expected increase in water production of up to 16kg/m(2) per 24h was obtained using CSSPVH. Therefore, CSSPVH is an effective design to produce sustainable potable water, even in areas with very low daily solar radiation intensity, due to its ability to store solar energy. In addition, some tested water quality parameters indicate that water produced from solar stills meet the WHO standard for potable water.
机译:可以利用太阳能作为可持续能源,利用太阳能蒸馏器来生产饮用水。在这项工作中,我们努力评估仍与500W加热器集成以产生饮用水的双斜率太阳能电池的性能。加热器由六个光伏模块供电,可产生1.5KWp,然后连接到四个容量为150Ah的电池。实验在马来西亚的热带气候下进行了几天。将长90厘米,宽45厘米,深8厘米的黑色喷漆钢槽用作玻璃覆盖的双坡度太阳能蒸馏器的盆。比较了传统的太阳能蒸馏器(CSS)和带有PV-Heater的太阳能蒸馏器(CSSPVH)的累积产水量。发现CSSPVH更有效。产生的水大约是CSS产生的水量的六倍。基于CSSPVH的能量平衡研究得出的数学模型用于进行仿真以验证实验结果。并建立了CSSPVH凝结盖与盆水能量平衡方程。在CSSPVH的数值生产率和实验生产率之间发现了很好的一致性。使用CSSPVH,预期的每24小时水生产增加量可达16kg / m(2)。因此,CSSPVH由于具有储存太阳能的能力,即使在日照强度很低的地区,也是一种可持续生产饮用水的有效设计。此外,一些经过测试的水质参数表明,从太阳能蒸馏器产生的水符合WHO的饮用水标准。

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