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Energy and exergy analysis of passive solar distillation systems

机译:被动式太阳能蒸馏系统的能量和火用分析

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In this communication, a comprehensive thermodynamic model for exergy analysis of a passive solar distillation system is presented. Temperatures of basin-liner, saline water body and inner and outer glass cover are estimated theoretically with the help of a computer program using a set of typical design and operating parameters. Energy and exergy analysis of a single-effect, single-slope horizontal passive solar still has been carried out under climatic conditions of India. It has been shown that the passive solar still can produce 4.17 l/m~2 of freshwater daily. Energy and exergy efficiency of the solar still are 30.42 and 4.93%, respectively. Causes, quantity and place of exergy destruction have also been explored for further research and improvement in the design and performance of solar stills. Exergy destruction or irreversibility in the process of each component, i.e. basin-liner, saline water body and glass cover, has been evaluated as 3353, 1633 and 362 W/m~2, respectively, corresponding to the total solar exergy input of 6958 W/m~2 on a typical day. Their corresponding exergy efficiencies are found to be 3.91, 17.67 and 42.36%. The global exergy efficiency of the solar still is also estimated as 23.14%, taking these exergy destructions into account. The basin-liner is identified as the component around which there is highest possibility of improvement.
机译:在此交流中,提出了用于被动式太阳能蒸馏系统的火用分析的综合热力学模型。理论上,借助于计算机程序,使用一组典型的设计和操作参数,可以估算盆衬,盐水和玻璃内外玻璃盖的温度。在印度的气候条件下,仍对单效,单斜率水平无源太阳能进行了能量和火用分析。研究表明,被动式太阳能仍然每天可产生4.17 l / m〜2的淡水。太阳能的能源效率和火用效率分别为30.42%和4.93%。还探讨了火用能破坏的原因,数量和地点,以进一步研究和改进太阳能蒸馏器的设计和性能。在每个组件(如流域衬里,盐水水体和玻璃盖)的过程中,火用破坏或不可逆性分别评估为3353、1633和362 W / m〜2,对应于6958 W的总太阳能输入/ m〜2。发现它们相应的火用效率分别为3.91、17.67和42.36%。考虑到这些火用破坏,太阳能的全球火用效率仍估计为23.14%。盆地衬里被认为是最有可能改善的部分。

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