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The use of passive baffles to increase the yield of a single slope solar still

机译:使用被动挡板来增加单斜坡太阳能的产量

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Despite their relative simplicity, single slope solar stills remain one of the most viable solutions to the production of freshwater from saline and non-potable water sources. Over the years, numerous researchers have attempted to improve the yield of single slope solar stills through changes to their geometry and the use of various design modifications. Despite this long history of research, one modification that has not been fully explored is the use of passive baffles to alter the natural convection inside them.Though baffles have frequently been used to suppress natural convection in enclosures, there may also be the opportunity to use them to enhance natural convection. This judicious placement of baffles to enhance the natural convection could potentially improve the yield from single slope solar stills, however it has not been well explored in the literature.To address this issue, this work examined the effect of vertically mounted passive baffles on the natural convection inside a single slope solar still geometry. In this vein, a computational fluid dynamics simulation was conducted for a still containing a baffle, with the results validated experimentally using particle image velocimetry. On this basis, subsequent simulations explored the effect of baffle length and position on stills with cover angles from 10-60.. The results showed that baffles did have a marked influence on the natural convection flow field and could increase the natural convection heat transfer coefficient, which is directly proportional to a solar still's yield, by up to 20%.It was also found that short baffles enhanced natural convection at low cover angles, while baffles mounted close to the front of a still provided an improvement to the transfer processes over the widest range of conditions. Finally, the work led to the development of a relationship to describe the effect of baffles on natural convection, as shown in Equation (1), that it is hoped will aid designers of single slope solar stills in the future. Nu' = Ra'(0.188)*AR(-0.29)*(cos theta)(-0.5)*(b/B)(-0.08) *(d/D)(-0.09) (1)
机译:尽管它们相对简单,但单幅斜坡太阳能仍然是从盐水和非饮用水源生产淡水的最活力的解决方案之一。多年来,许多研究人员试图通过对其几何形状的变化和各种设计修改的改变来提高单斜坡太阳能的产量。尽管研究历史悠久,但一直探索的一个修改是使用被动挡板来改变它们内部的自然对流。虽然挡板经常被用来压制围栏中的自然对流,但也可能有机会使用他们加强自然对流。这种明智地放置挡板来增强自然对流可能会提高单斜坡太阳能剧本的产量,但是在文献中尚未康复。要解决这个问题,这项工作探讨了垂直安装被动挡板对自然的影响在单个斜坡太阳能静态几何中的对流。在该静脉中,对仍然含有挡板进行计算流体动力学模拟,结果使用粒子图像速度实验验证。在此基础上,随后的模拟探讨了挡板长度和位置在10-60的盖角上的影响。结果表明,挡板对自然对流流场具有显着影响,可以提高自然对流传热系数,这与太阳能仍然成正比,高达20%。也发现,短挡板在低盖角处增强自然对流,而挡板靠近A的前部仍然可以改善转移过程最广泛的条件。最后,该工作导致了一种关系,以描述挡板对自然对流的影响,如公式(1)所示,希望将来会仍将在未来的单斜坡太阳能仍然存在的设计者。 nu' = ra'(0.188)* ar(-0.29)*(cosθ)( - 0.5)*(b / b)( - 0.08)*(d / d)( - 0.09)(1)

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