Energy, exergy, and economic analyses of a modified hemispherical solar distiller augmented with convex absorber basin, wicks, and PCM

•New hemispheric solar distiller with wick convex basin integrated with and without PCM is studied.•Three solar hemispheric distillers are designed, examined, and compared.•The still with wick convex basin/PCM produced an 87.0% higher distilled yield.•An increase in the energy and exergy efficiencie...

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Bibliographic Details
Published in:Solar energy Vol. 261; pp. 43 - 54
Main Authors: El Hadi Attia, Mohammed, Zayed, Mohamed E., Kabeel, A.E., Abdullah, A.S., Abdelgaied, Mohamed
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-09-2023
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Summary:•New hemispheric solar distiller with wick convex basin integrated with and without PCM is studied.•Three solar hemispheric distillers are designed, examined, and compared.•The still with wick convex basin/PCM produced an 87.0% higher distilled yield.•An increase in the energy and exergy efficiencies reached 85.6% and 128.2%, respectively.•Reduction in cost per liter of freshwater liter reached 37.1% over the conventional one. An innovative designed convex basin is utilized instead of the flat absorber basin to maximize the exposure and vaporization surface areas. Moreover, a jute cloth layer is used over the convex basin as a wicking material for promoting the vaporization rates inside the modified distiller. Additionally, the influences of using phase change material (PCM) thermal storage on the distiller performance was studied on the distiller thermo-economic performance are investigated. Three hemispherical distillers are designed and tested, namely, modified hemispheric distiller with a wick convex absorber basin (MHD-WCAB), modified distiller with a wick convex absorber basin and PCM (MHD-WCAB + PCM), and reference hemispheric distiller (RHD). The performance of three proposed hemispherical stills is performed based on economic, energetic, and exergetic points. The daily distilled product reached 7.95 and 6.90 kg/m2/day for the MHD-WCAB + PCM and MHD-WCAB, respectively, 4.25 kg/m2/day for RHD, achieving 87.06% and 62.35% improvement relative to the RHD. Furthermore, the daily energy efficiency of MHD-WCAB + PCM and MHD-WCAB is evaluated as 46.90% and 34.04%, respectively, representing an improvement rate of 85.67% and 61.74% compared to RHD. The daily exergy efficiency of MHD-WCAB + PCM and MHD-WCAB reached 3.88% and 3.39%, respectively, yielding an augmentation rate of 128.24%, and 99.41% over RHD.
ISSN:0038-092X
1471-1257
DOI:10.1016/j.solener.2023.05.057