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Effect of water depth and temperature on the productivity of a double slope solar still

机译:水深和温度对双斜率太阳蒸馏器生产率的影响

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Drinkable water is a basic necessity for humanity, and the increase in human population growth has led to water pollution to the surface and underground water reservoirs. In order to meet the increasing demand for potable water, researchers have developed various technologies to meet this target. Solar distillation is a technology suitable for producing distilled water from brackish water. This is achieved by the use of a solar still. A solar still is a simple solar device used in converting salt/brackish water into potable water. In this research, the productivity of water by a double slope solar still was determined by varying the water depth and surrounding temperature for nine days in the premises of Lagos State University, Ojo, Nigeria at 6.5°N, 3.35°E. In this research embarked upon, it was observed that at a depth of 2.0cm the maximum output of the solar still was obtained and a maximum efficiency of 25.3%.
机译:饮用水是人类的基本必需品,而人口增长的增加导致了地表水和地下水蓄水池的水污染。为了满足对饮用水的不断增长的需求,研究人员开发了各种技术来实现这一目标。太阳蒸馏是一种适合于从微咸水生产蒸馏水的技术。这是通过使用太阳能蒸馏器来实现的。太阳能蒸馏器是一种简单的太阳能设备,用于将咸水/微咸水转化为饮用水。在这项研究中,在尼日利亚奥约州拉各斯州立大学(Lagos State University)的6.5°N,3.35°E处,通过改变水深和周围温度9天来确定双斜率太阳蒸馏器的水生产率。在进行的这项研究中,观察到在2.0cm的深度处可获得最大的太阳能蒸馏器输出,最大效率为25.3%。

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