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Augmentation of distillate yield in “V”-type inclined wick solar still with cotton gauze cooling under regenerative effect

机译:再生作用下棉纱网冷却提高“ V”型斜芯太阳能蒸馏器馏分收率

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Water flowing over bare glass is not evenly distributed over the width of the glass cover. Effective temperature reduction in the glass cover is not possible in this case. Thin cotton gauze is used over the glass cover to solve this problem. The amount of water required to cool the glass cover is low and the flowing water is collected and fed into a hot water reservoir. Water from the hot water reservoir is directed to the wick absorber by a drip valve. The system was tested in two ways (i) regenerative effect with cotton gauze (ii) regenerative effect without cotton gauze. The inclined wick absorber ensures that the surface is always wet due to capillary action and there were no dry spots. Excess flow in the wick absorber is pumped back to the hot water reservoir. Due to low thermal inertia of the wick and regenerative effect, the system has quick start-up times, as well as higher operating temperatures. This resulted in higher distillate yield than simple solar stills. Since the hot water reservoir remained warm enough during the night hours, a reasonable amount of nocturnal distillate output was also obtained. Optimum inclination of the wick absorber was found to be 20° and mass flow rate through the wick absorber was 200?ml/minute. The system with cotton gauze produced distillate yield of 6,300?ml/m~(2) whereas the system without cotton gauze produced distillate yield of 5,600?ml/m~(2).
机译:流过裸露玻璃的水在玻璃盖的整个宽度上分布不均。在这种情况下,无法有效降低玻璃盖的温度。解决此问题的方法是在玻璃盖上使用薄纱布。冷却玻璃盖所需的水量少,流动的水被收集并送入热水储罐。来自热水储存器的水通过滴水阀引导至吸油芯。用两种方法测试该系统(i)带有棉纱布的再生效果(ii)不带棉纱布的再生效果。倾斜的棉芯吸收器可确保由于毛细作用而使表面始终保持湿润,并且没有干点。芯吸器中多余的水被泵回热水储罐。由于灯芯的热惯性低且具有再生作用,因此该系统具有快速启动时间以及较高的工作温度。与简单的太阳能蒸馏器相比,这导致了更高的馏出物产率。由于热水罐在夜间保持足够的温暖,因此也获得了合理量的夜间馏出物输出。发现吸油芯的最佳倾斜角度为20°,通过吸油芯的质量流量为200?ml /分钟。使用棉纱布的系统产生的馏出物产率为6,300?ml / m〜(2),而没有棉纱布的系统产生的馏出物产率为5,600?ml / m〜(2)。

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