利用pv / t提高太阳能蒸馏机性能

Q2 Engineering
Nguyen Viet Linh Le, Tri Hieu Le, Thi Minh Hao Dong, Van Vang Le, D. Tung
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引用次数: 2

摘要

最近,由于全球变暖和城市化,许多大城市在未来几十年可能面临day zero的挑战。显然,水是维持地球上生命不可缺少的组成部分。虽然每时每刻都需要饮用水,但可用淡水的数量受到海平面上升和工业化污染的严重影响。由于全球性的水危机,人们在实践中研究和开发了不同的从微咸水中生产清洁水的方法,然而,太阳能蒸馏水是最经济和理想的方法,因为这种方法利用了太阳能这种环保和经济的资源。在过去的15年里,光伏太阳能集热器(PV/T)令人印象深刻的价格下降使它们变得流行和容易获得。因此,PV/T在太阳能蒸馏器中的应用正在成为一种潜在的水蒸馏装置。因此,本文综述了一种与光伏板相结合的有源太阳能蒸馏器,以提高太阳能光伏的馏出物收率和效率。本文综述了不同类型的太阳能蒸馏器(如传统太阳能蒸馏器(CSS)、双斜面太阳能蒸馏器(DSSS)、阶梯式太阳能蒸馏器和梯级式太阳能蒸馏器)与不同太阳能集热器(如平板集热器(FPC)和真空管集热器(ETC))和太阳能光伏组件的耦合研究。结果表明,与被动模式相比,混合PV/T主动式太阳能仍然提高了馏分收率,能源效率和火用效率。该冷却方法提高了光伏太阳能集热器的性能,提高了太阳能蒸馏器的生产效率。此外,环境经济估计表明,太阳能仍然与PV/T相结合,大大减少了二氧化碳的排放量。可以说,PV/T主动式太阳能混合蒸馏器既可用于供电,又可用于饮用水,是适合商业化的。最后,对今后的研究方向进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AUGMENTATION OF SOLAR WATER DISTILLER PERFORMANCE WITH PV/T
Recently, due to global warming and urbanization, there are many major cities that may face the challenge of day zero next decades. Obviously, water is an indispensable component for maintaining life on the earth. Although portable water is required of the hour, the quantity of available freshwater is impacted significantly by sea-level rise and pollution from industrialization. As a consequence of the global water crisis, different methods for clean water production from brackish water have been studied and developed in practice, however, the solar distillation of water is the most economical and desirable approach due to this method utilize solar energy that is the environmentally friendly and economical resource. Over the last 15 years, the impressive price drop of the photovoltaic solar collector (PV/T) makes them popular and easy to access. As a result, the employment of PV/T in solar stills is emerging as a potential device for water distillation. Therefore, in this paper, an active solar distiller combined with a photovoltaic panel has been reviewed for improvement of the distillate yield and effectiveness of solar photovoltaic. This review work presents a variety of studies on various types of solar still (for example conventional solar still (CSS), double slope solar still (DSSS), stepped solar distiller, and cascade solar still) couples with different solar water collectors (such as flat plate collector (FPC) and evacuated tubes collector (ETC)) and solar photovoltaic modules. It is obtained that the hybrid PV/T active solar still improves the distillate yield, energy efficiency, and exergy efficiency as compared to passive mode. The cooling method enhances the performance of the photovoltaic solar collector as well as the productivity of solar still. Moreover, the environmental economic estimation reveals that the solar still coupled with the PV/T mitigated considerably the amount of CO2. It can be stated that it is suitable to commercialize the hybrid PV/T active solar still for supplying not only electricity but drinking water also. Finally, this review paper also suggests the scope for the research in the future.
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来源期刊
Water Conservation and Management
Water Conservation and Management Engineering-Ocean Engineering
CiteScore
2.90
自引率
0.00%
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0
审稿时长
12 weeks
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