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Effect of shading and evaporative cooling of glass cover on the performance of evacuated tube-augmented solar still

机译:玻璃盖遮荫和蒸发冷却对疏散管增强太阳能性能的影响

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摘要

Solar still is a promising device used worldwide for water distillation due to its simple design, easy construction and low cost. However, the freshwater output from a solar still is moderate. Several active techniques have been emerged over the years to solve this problem. In this paper, an experimental study is carried out on a single-slope solar still augmented with an evacuated tube collector (ETC) and a heat exchanger working on thermos-yphon. The effects of shading and evaporative cooling of glass cover on the active solar still performance were explored and analyzed on separate days under the meteorological conditions of Kurukshetra, India. The experiments were conducted at a constant water depth of 4 cm. The main aim of this study is to enhance the productivity and efficiency of ETC-coupled solar still by increasing the condensation rate. The experimental results showed remarkable increment in freshwater productivity of the still with a maximum of 2114 ml/day achieved for the case of ½ shading and cooling of glass cover. An increase of 16.4% and 3.8% in freshwater productivity and overall efficiency was achieved with ½ shading and cooling of glass cover in comparison with solar still without glass cover shading and cooling. The solar still performance was decreased when the shading and cooling are done on more than half the area of glass cover.
机译:由于其简单的设计,易建用和低成本,太阳仍然是一个有希望的设备用于水蒸馏。然而,来自太阳的淡水产量仍然是中等的。多年来已经出现了几种积极的技术来解决这个问题。在本文中,在单斜率的太阳能下进行实验研究,仍然用抽空的管收集器(ETC)和在Thermos-Yphon上工作的热交换器。探讨了玻璃盖对活跃的太阳能静止性能的遮荫和蒸发冷却的影响,并在印度kurukshetra的气象条件下分析并分析。实验以4cm的恒定水深进行。本研究的主要目的是通过提高冷凝率来提高等耦合太阳的生产率和效率。实验结果表明,对于玻璃盖的1/2遮阳和冷却,仍然最大为2114毫升/天的淡水生产率显着增加。随着玻璃盖的½遮阳和冷却,玻璃盖的仍然没有玻璃盖和冷却,增加了16.4%和3.8%的淡水生产率和总体效率。当遮阳和冷却在玻璃盖面积的一半以上完成时,太阳静止性能降低。

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