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Experimental and economic analysis of energy storage-based single-slope solar still with hollow-finned absorber basin

机译:基于能量存储的单斜率太阳能的实验和经济分析依然用空心翅片吸收盆

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The paucity of drinking water is an alarming glitch across the globe. The conversion of available seawater into drinking water by utilizing renewable energy is the best way to surmount this challenge. Desalination through solar still is one of the notable, monetary, and viable processes among various desalination approaches. The current research aims to augment the potable water yield of single-slope solar still by using a hollow-finned absorber basin inserted into paraffin wax-phase change material (PCM). The effect of hollow-finned absorber basin on the yield of solar still is investigated separately, with and without PCM, and compared with the results of conventional solar still (CSS). In the first set of experiments, the CSS and solar still with a hollow-finned absorber basin without PCM (SSHF) are investigated. In the second set of experiments, the CSS and solar still with a hollow-finned absorber basin inserted into PCM (SSHFP) are investigated. The experimental results reported that the CSS is having almost the same yield on the 2 days of testing. The yield of SSHF and SSHFP is increased by 15.7% and 52.4%, respectively, when compared with CSS. The results of the economic analysis proved that the payback period and cost per liter of freshwater produced from SSHFP are comparatively better than SSHF and CSS.
机译:饮用水的缺乏是全球令人震惊的毛刺。利用可再生能源将可用的海水转化为饮用水是克服这一挑战的最佳方式。通过太阳系脱盐仍然是各种海水淡化方法中的值得注意的,货币和可行的过程之一。目前的研究旨在通过插入石蜡 - 相变材料(PCM)中的空心翅片吸收盆来增加单斜率太阳的饮用水产量。中空吸收盆对太阳能产量的影响仍然分别研究,有和没有PCM,并与常规太阳静止的结果(CSS)进行比较。在第一组实验中,研究了CSS和太阳仍然具有没有PCM(SSHF)的中空翅片的吸收盆(SSHF)。在第二组实验中,研究了仍然具有插入PCM(SSHFP)中的中空翅片吸收剂盆的CSS和太阳。实验结果报道,CSS在测试后的2天内具有几乎相同的产量。与CSS相比,SSHF和SSHFP的产量分别增加了15.7%和52.4%。经济分析的结果证明,从SSHFP生产的每升淡水的投资回收期和成本比SSHF和CSS相对较好。

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