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Solar powered desalination system using Fresnel lens

机译:使用菲涅耳透镜的太阳能海水淡化系统

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The Philippines is surrounded by coastal areas and these areas can be a potential source for potable water. This study aims to design and construct a solar powered desalination system using Fresnel lens. The experimental study was conducted using polluted salt water for the sample and desalination was carried out using the designed system. The desalination system was composed of the solar concentrator, solar still and the condenser system. The Fresnel lens was made of acrylic plastic and was an effective solar concentrator. Solar stills made of dark colored glass bottles were effective in absorbing the solar energy. The condenser system made of polybutylene and polystyrene were effective in condensing the vapor at ambient temperature. The shortest time of vaporization of the salt water was at 293 sec and the optimum angle of position of the lens was 36.42°. The amount of condensate collected was directly proportional to the amount of salt water in the solar still. The highest mean efficiency of the designed set-up was 34.82%. The water produced by the solar powered desalination system using Fresnel lens passed the standards set by WHO (World Health Organization) for drinking water.
机译:菲律宾周围环绕着沿海地区,这些地区可以是饮用水的潜在来源。本研究旨在使用菲涅耳透镜设计和构建太阳能海水淡化系统。使用污染的盐水进行实验研究,用于样品,使用设计的系统进行脱盐。海水淡化系统由太阳能集中器,太阳能和冷凝器系统组成。菲涅耳透镜由丙烯酸塑料制成,是一种有效的太阳能浓缩器。阴光仍然由深色玻璃瓶制成,有效地吸收太阳能。由聚丁烯和聚苯乙烯制成的冷凝器系统有效地在环境温度下冷凝蒸汽。盐水的最短蒸发时间为293秒,晶状体的最佳位置是36.42°。收集的缩合物的量与太阳太阳的盐水量成正比。设计设置的最高效率为34.82%。使用菲涅耳透镜的太阳能海水淡化系统生产的水通过了世卫组织(世界卫生组织)用于饮用水的标准。

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