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The Effect of Cover Geometry on the Productivity of a Modified Solar Still Desalination Unit

机译:覆盖几何对改进太阳静物静物静水件生产率的影响

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Desalination methods based on renewable energy offer a promising solution to both water shortage and environmental degradation problems that continue to grow globally. The solar still is one such method that uses a sustainable energy source to produce potable water albeit at a relatively low productivity rate. A new modification has been introduced to the conventional solar still to enhance its productivity. The modification consists of a light weight, black finished, slowly-rotating drum, which leads to a sustainable, cost-effective, and low-tech amendment that preserves the key features of the still while considerably increasing its yield compared to a control still that does not include the drum. In this paper, three different cover geometries of the modified still are studied and the effect of cover design on the performance of the still in terms of measured temperatures and productivity is considered. The three cover designs are as follows: double-sloped or triangular, single-sloped and curved cover. In addition, a conventional double-sloped still without the rotating drum is operated in parallel as a control and the findings of this study are reported and discussed.
机译:基于可再生能源的海水淡化方法为缺水和环境退化问题提供了有希望的解决方案,这些问题在全球范围内继续生长。太阳仍然是一种这样的方法,它使用可持续的能源来生产饮用水,尽管生产率相对较低。已经引入了传统的太阳能仍可提高其生产率的新修改。该修改包括重量轻,黑色处理,缓缓旋转的鼓状,从而导致一个可持续的,高性价比和低技术含量的修订,保留了其收益率仍然同时显着增加的关键特性与对照相比仍然是的不包括鼓。在本文中,研究了修改的三种不同覆盖几何形状,并且考虑了覆盖设计对测量温度和生产率方面的性能的影响。三个封面设计如下:双斜率或三角形,单倾斜和弯曲的盖子。另外,仍然没有旋转鼓的传统双倾斜被并联操作,并报告并讨论该研究的结果。

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