Theoretical study of a double-slope solar still with solar air heater condenser

Ahmed Ghazy
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Abstract

Despite their limited water production and efficiency, double-slope solar stills are an appropriate solution for water scarcity in hot arid regions. Numerous studies have focused on enhancing the effectiveness of double-slope solar stills. In this context, this study introduces a double-slope solar with a solar air heater condenser (DSSS-SAHC). The back cover of a conventional double-slope solar still was replaced by a glass air heater in order to recover the still’s thermal losses in heating air. The transient performance of the DSSS-SAHC was investigated numerically under real weather conditions and compared to the performance of a conventional double-slope solar still (CDSSS) with the same aspects. The impact of various weather and operation factors on the DSSS-SAHC performance was investigated at air flows of 0.01 and 0.1 kg/s to account for both natural and forced air circulation, respectively. The results revealed an increase of about 15% and 6% in the thermal efficiency of the DSSS-SAHC over that of the CDSSS, respectively, at air flows of 0.1 and 0.01 kg/s despite the DSSS-SAHC distillate was insignificantly greater than that of the CDSSS at both air flows. In addition, the water distillate of the DSSS-SAHC increased as the solar irradiance increased, the ambient wind and ambient temperature had contrary effects on the efficiency, and the initial saline water level had a negligible impact on the overall performance
带有太阳能空气加热器冷凝器的双斜面太阳能蒸馏器的理论研究
尽管产水量和效率有限,但双斜面太阳能蒸馏器是炎热干旱地区水资源短缺的适当解决方案。许多研究都集中在提高双斜面太阳能蒸馏器的效率上。在此背景下,本研究介绍了带有太阳能空气加热器冷凝器的双斜面太阳能(DSSS-SAHC)。传统的双斜面太阳能蒸馏器的后盖被玻璃空气加热器取代,以恢复蒸馏器在加热空气时的热损失。在实际天气条件下,对双斜面太阳蒸馏器的瞬态性能进行了数值研究,并与传统双斜面太阳蒸馏器(CDSSS)在相同方面的性能进行了比较。在空气流量为0.01 kg/s和0.1 kg/s的情况下,研究了各种天气和运行因素对DSSS-SAHC性能的影响,分别考虑了自然和强迫空气环流。结果表明,在0.1和0.01 kg/s气流下,DSSS-SAHC的热效率比CDSSS分别提高了约15%和6%,尽管在两种气流下DSSS-SAHC馏分物的热效率均不显著高于CDSSS。此外,DSSS-SAHC的馏分水随太阳辐照度的增加而增加,环境风和环境温度对效率的影响相反,初始咸水水位对整体性能的影响可以忽略不计
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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