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不同形状通道集成对双坡太阳能蒸馏器性能提升的实验研究

Experimental investigation on the performance improvement of double-slope solar still by different shapes of the channel integration.

作者信息

Thavamani Jeyaraj, Kumar Pankaj

机构信息

Department of Mechanical Engineering, SRM Institute of Science and Technology, Kattankulathur, Chennai, 603203, Tamilnadu, India.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(17):49450-49469. doi: 10.1007/s11356-023-25619-z. Epub 2023 Feb 13.

DOI:10.1007/s11356-023-25619-z
PMID:36780076
Abstract

An experimental investigation has been done for the performance enhancement of double-slope solar still (DSSS) by incorporating channels of different shapes. There are five solar stills including one conventional solar still, and four others modified with square (Sq), rectangular (Rect), triangular (Tri), and trapezoidal (Trap) channel are used. The temperature difference between the channel inlet and outlet, basin, and glass cover was measured at an optimum basin water depth of 2 cm. It is found that incorporating the channels inside the still enhances the basin water surface temperature. Results demonstrate that the best yield rate was achieved from the trapezoidal shape channel inserted in double-slope solar still (DSSS + Trap). DSSS + Sq, DSSS + Rect, DSSS + Tri, and DSSS + Trap channels increased the yield rate by 4.35%, 13.04%, 20.28%, and 30.43% compared to conventional double-slope solar still. Energy and exergy analysis was calculated for different days in the modified solar still. The cost per liter of distillate water was least ($0.034) for DSSS + Trap system with a payback period of 6.5 months. Moreover, it is observed that the modified double-slope solar still with trapezoidal channel attachment has reduced 5.33 tons CO for its life cycle. Furthermore, water samples collected during experimental have a drinking quality as per requirements of the World Health Organization standards.

摘要

通过纳入不同形状的通道对双坡太阳能蒸馏器(DSSS)的性能提升进行了实验研究。使用了五个太阳能蒸馏器,包括一个传统太阳能蒸馏器,以及另外四个分别用方形(Sq)、矩形(Rect)、三角形(Tri)和梯形(Trap)通道进行改进的蒸馏器。在2厘米的最佳水槽水深条件下,测量了通道进出口、水槽和玻璃盖之间的温差。发现将通道纳入蒸馏器内部可提高水槽水面温度。结果表明,插入双坡太阳能蒸馏器(DSSS + Trap)中的梯形通道实现了最佳产率。与传统双坡太阳能蒸馏器相比,DSSS + Sq、DSSS + Rect、DSSS + Tri和DSSS + Trap通道的产率分别提高了4.35%、13.04%、20.28%和30.43%。对改进后的太阳能蒸馏器在不同日期进行了能量和㶲分析。DSSS + Trap系统的每升蒸馏水成本最低(0.034美元),投资回收期为6.5个月。此外,观察到带有梯形通道附件的改进双坡太阳能蒸馏器在其生命周期内减少了5.33吨二氧化碳排放。此外,实验期间采集的水样符合世界卫生组织标准的饮用水质量要求。

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