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通过增加热电冷却器作为外部冷凝器对改进型单池太阳能蒸馏器进行性能研究。

Performance investigation of a modified single-basin solar distiller by augmenting thermoelectric cooler as an external condenser.

作者信息

Patel Vivek, Kaushik Lav Kumar, Khimsuriya Yogeshkumar Devjibhai, Mehta Pranav, Kabeel Abd Elnaby

机构信息

Department of Mechanical Engineering, Gujarat Power Engineering, and Research Institute, Mehsana, Gujarat, India.

Department of Mechanical Engineering, Dharmsinh Desai University, Nadiad, 387001, Gujarat, India.

出版信息

Environ Sci Pollut Res Int. 2023 May;30(22):61829-61841. doi: 10.1007/s11356-023-26291-z. Epub 2023 Mar 18.

Abstract

Harvesting freshwater from saline and seawater using solar energy has proven a significant impact in recent times. The present study aims to investigate the performance of the solar desalination system by incorporating glass reflectors, heat storage media, and a thermoelectric cooling system with a single-basin-type distiller. Accordingly, the objective of the study is to improve the performance of the solar distiller in terms of freshwater production and efficiency compared to a conventional setup. Moreover, the designed unit was tested under the environment of the Western part of India (Mehsana-23.5880° N, 72.3693° E) for 19 days in the months of May and June 2022. The maximum daily productivity observed during the day was 2.5 l at an average solar radiation of 1200 W/m, which was 1.23 times higher than its conventional counterpart. Similarly, the energy efficiency showed a maximum improvement of 23.73%. At the middle of the day, i.e., maximum performance condition, the exergy efficiency was doubled with current modifications. Solar radiation and ambient temperature were found to be the most critical parameters that influence performance. Modifications also increase the % off sunshine hour productivity compared to sunshine hour from ~ 10 to 11% to ~ 20.8 to 24%, respectively. The cost of water distillation for the proposed solar still was found as 0.037 $/l/m,s and the payback period was estimated as 2.27 years. The overall results indicate the positive influence of the modifications; hence, this type of setup is feasible for implementation on the field in harsh and coastal line areas. However, modified single-basin solar still needs extended field study to realize the full potential of the modifications.

摘要

近年来,利用太阳能从盐水和海水中获取淡水已显示出重大影响。本研究旨在通过将玻璃反射器、蓄热介质和热电冷却系统与单池式蒸馏器相结合,来研究太阳能海水淡化系统的性能。因此,该研究的目的是与传统装置相比,在淡水产量和效率方面提高太阳能蒸馏器的性能。此外,所设计的装置于2022年5月和6月在印度西部(梅赫萨纳,北纬23.5880°,东经72.3693°)的环境下进行了19天的测试。在平均太阳辐射为1200 W/m²的情况下,白天观察到的最大日产量为2.5升,比传统对应装置高出1.23倍。同样,能源效率最大提高了23.73%。在一天当中,即在最大性能条件下,当前的改进使(火用)效率提高了一倍。发现太阳辐射和环境温度是影响性能的最关键参数。改进措施还使日照小时生产率的百分比分别从约10%至11%提高到约20.8%至24%。所提出的太阳能蒸馏器的水蒸馏成本为0.037美元/升/平方米·秒,投资回收期估计为2.27年。总体结果表明了这些改进措施的积极影响;因此,这种类型的装置在恶劣和沿海地区的实地实施是可行的。然而,改进后的单池太阳能蒸馏器仍需要进行扩展的实地研究,以充分发挥这些改进措施的潜力。

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