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Modeling and experimental study of a corrugated wick type solar still: Comparative study with a simple basin type

机译:波纹灯芯型太阳能蒸馏器的建模和实验研究:与简单盆型的比较研究

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In the present work, the productivity of a solar still is modified by forming the evaporative surface as a corrugated shape as well as by decreasing the heat capacity with the use of a porous material. This target has been achieved by using black clothes in a corrugated shape that are immersed in water where the clothes absorbs water and get saturated by capillary effect. Along with the proposed corrugated wick type solar still, a simple basin still type was fabricated and tested to compare the enhancement accomplished by the developed solar still. Inclined reflectors were used to augment the solar radiation incident on the plane of the developed solar stills. The energy balance in the developed mathematical models takes into consideration the glass covers, the porous material, along with the portion of water exposed to the transmitted solar radiation as well as the portion of water shaded by the corrugated surface. The developed mathematical model was validated by fabricating and testing two models for the proposed and simple basin solar stills under the same conditions. Good agreement between the simulated and experimental results has been detected. It has been found that an improvement of about 34% in the productivity for the proposed wick type solar still is gained as compared to the simple basin case. Also, the best tilt angle for the inclined reflector has been found to be about 30 degrees with respect to the vertical direction of the setup under consideration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在当前工作中,通过将蒸发表面形成为波纹状以及通过使用多孔材料降低热容来改变太阳能蒸馏器的生产率。通过使用波纹状的黑色衣服来实现该目标,该黑色衣服浸入水中,衣服会吸收水并通过毛细作用饱和。与拟议的瓦楞芯吸式太阳能蒸馏器一起,制造并测试了一种简单的盆式蒸馏器,以比较开发的太阳能蒸馏器实现的增强效果。倾斜的反射器用于增加入射到已开发的太阳剧照平面上的太阳辐射。在已开发的数学模型中的能量平衡考虑到了玻璃盖,多孔材料以及暴露于透射的太阳辐射中的一部分水以及波纹表面遮盖的一部分水。通过在相同条件下为拟议的和简单的盆地太阳能蒸馏器制造和测试两个模型,验证了所开发的数学模型。实验结果与模拟结果吻合良好。已经发现,与简单的盆情况相比,所提出的灯芯型太阳能仍可将生产率提高约34%。而且,已经发现倾斜反射器的最佳倾斜角相对于所考虑的装置的垂直方向为大约30度。 (C)2015 Elsevier Ltd.保留所有权利。

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