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利用水膜冷却和混合复合隔热提高 PV/T 集成单坡太阳能海水淡化效率

Enhancement of PV/T-integrated single slope solar desalination still productivity using water film cooling and hybrid composite insulation.

机构信息

Department of Electrical and Electronics Engineering, Kamaraj College of Engineering and Technology, Madurai, Tamil Nadu, 625701, India.

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

出版信息

Environ Sci Pollut Res Int. 2020 Sep;27(26):32179-32190. doi: 10.1007/s11356-019-06131-9. Epub 2019 Aug 23.

Abstract

This context is about enhancing the freshwater production of a single slope solar desalination still (SSSDS) using water film cooling over the glass cover and using hybrid natural fibre composite (HNFC) insulation. In contrast to the conventional insulations, we proposed the HNFC insulation; this composite was made of natural fibre Pharsalus vulgaris (6 %) and nano-silica (1 %) with unsaturated polyester resin. In this study, conventional SSSDS and proposed SSSDS with enhanced evaporation and condensation have been designed. The same was built with native materials. A conventional and proposed type SSSDS was subjected to the same experimental condition. The experimental result showed that using water film cooling over glass cover and HNFC insulation at 0.5 cm depth caused a 35% increase in the amount of distilled water when compared with the conventional type SSSDS with polystyrene-Styrofoam (thermocol) insulation. Water film cooling over glass cover and HNFC insulation at 1 cm depth caused a 21% increase in the amount of distilled water when compared with the conventional type SSSDS with thermocol insulation. The conventional type solar desalination still with thermocol insulation at 0.5 and 1 cm depth yields are 1.665 and 1.171 l/m/day, respectively, and the proposed solar desalination still with water film cooling over glass cover and HNFC insulation at 0.5 and 1 cm depth yields are 2.253 and 1.420 l/m/day, respectively.

摘要

这篇文章主要探讨了在单坡太阳能蒸馏器(SSSDS)的玻璃盖上采用水膜冷却并使用混合天然纤维复合材料(HNFC)隔热来提高淡水产量。与传统隔热材料相比,我们提出了 HNFC 隔热,这种复合材料由 Pharsalus vulgaris 天然纤维(6%)和纳米二氧化硅(1%)与不饱和聚酯树脂制成。在这项研究中,设计了具有增强蒸发和冷凝效果的传统 SSSDS 和改进型 SSSDS。它们均使用本地材料建造。将传统和改进型 SSSDS 置于相同的实验条件下进行测试。实验结果表明,与使用聚苯乙烯泡沫塑料(泡沫)隔热的传统 SSSDS 相比,在玻璃盖上采用水膜冷却和 HNFC 隔热(深度为 0.5 厘米)可使蒸馏水产量增加 35%。与使用泡沫隔热的传统 SSSDS 相比,在玻璃盖上采用水膜冷却和 HNFC 隔热(深度为 1 厘米)可使蒸馏水产量增加 21%。传统的 SSSDS 采用泡沫隔热,在深度为 0.5 和 1 厘米时的产水量分别为 1.665 和 1.171 l/m/day,而采用水膜冷却和 HNFC 隔热的改进型 SSSDS 在深度为 0.5 和 1 厘米时的产水量分别为 2.253 和 1.420 l/m/day。

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