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利用漂浮式黑色海绵层提高管式太阳能蒸馏器性能的实验研究。

Experimental investigation on the performance improvement of tubular solar still using floating black sponge layer.

机构信息

Mechanical Power Engineering Department, Faculty of Engineering, Tanta University, Tanta, Egypt.

Mechanical Power Engineering and Energy Department, Faculty of Engineering, Minia University, Minia, 61519, Egypt.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(26):34968-34978. doi: 10.1007/s11356-021-13187-z. Epub 2021 Mar 4.

Abstract

The experimental study in this manuscript aims to enhance the performance of tubular solar distillers. The tubular distillers are characterized by having a large surface area for receiving and condensing compared to a single-slope distiller, and accordingly, the use of floating sponge layers is a good and very effective choice in increasing the rate of evaporation and thus improving the cumulative yield of the tubular distillers. In order to obtain the optimum specifications of the sponge layers that achieve the highest performance of the tubular distillers, four tubular distillers were designed and constructed; the first is a reference distiller without sponge and the other three tubular distillers contain the sponge layers with different specifications. The experimentations were conducted in two stages: in the first stage, three different thicknesses of the sponge layer (20, 30, and 40 mm) were studied. In the second stage, three different densities of the sponge layer (16, 20, and 30 kg/m) were studied. All test cases were compared with reference distiller under the same climatic conditions of Egypt. The results show that the utilization of a floating sponge improves the tubular distiller performance. The peak improvement in the accumulative yield of tubular distillers was achieved in case of utilizing a sponge layer with a 30-mm thickness and 16-kg/m density. The reference distiller gives maximum accumulative yield of 3.72 L/m day while the floating sponge layer utilization improves the accumulative yield to 5.92 L/m day with 59.2% improvement. Also, the utilization of floating sponge layer reduced the cost of distillate yield by 36.3% compared to reference distiller.

摘要

本文的实验研究旨在提高管式太阳能蒸馏器的性能。与单坡式蒸馏器相比,管式蒸馏器的特点是具有更大的接收和冷凝表面积,因此,使用浮式海绵层是增加蒸发率并提高管式蒸馏器累积产量的好选择。为了获得实现管式蒸馏器最佳性能的海绵层最佳规格,设计并制造了四个管式蒸馏器;第一个是没有海绵的参考蒸馏器,而其他三个管式蒸馏器则包含不同规格的海绵层。实验分两个阶段进行:在第一阶段,研究了三种不同厚度的海绵层(20、30 和 40 毫米);在第二阶段,研究了三种不同密度的海绵层(16、20 和 30 千克/立方米)。所有测试案例均在与埃及相同的气候条件下与参考蒸馏器进行了比较。结果表明,浮式海绵的利用可以提高管式蒸馏器的性能。在利用厚度为 30 毫米且密度为 16 千克/立方米的海绵层的情况下,管式蒸馏器的累积产量峰值得到了最大提高。参考蒸馏器的最大累积产量为 3.72 升/米/天,而浮式海绵层的利用将累积产量提高到 5.92 升/米/天,提高了 59.2%。此外,与参考蒸馏器相比,浮式海绵层的利用将淡化水产量的成本降低了 36.3%。

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