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Performance analysis of an integrated solar based thermo-electric and desalination system

机译:集成太阳能热电和海水淡化系统的性能分析

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In this paper, the performance of a novel multi-generation solar system is evaluated at different working conditions. The proposed system is able to produce electric power, distilled water and hot water, concurrently. The performance of the main components including thermoelectric generator, thermal energy storage, desalination unit and hot water tank is modeled mathematically, and then evaluated at different working conditions using the second law of thermodynamics. The effects of working temperature and solar irradiation are also investigated as the key operational parameters. Moreover, the Genetic algorithm is employed to determine the optimum working conditions for the minimum thermodynamic irreversibility. The results indicate that using 960 MJ/d of incident solar energy, the system produces 896 kJ/d electrical energy, 177 kg/d distilled water and 29,000 kg/d hot water. The maximum energy and exergy efficiency of the integrated system is about 46 and 1.5%, respectively. The outcomes of this research confirm the suitability of such a system for residential application. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文在不同的工作条件下评估了新型多代太阳系的性能。所提出的系统能够同时生产电力,蒸馏水和热水。在数学上建模包括热电发电机,热能储存,海水淡化单元和热水箱的主要组件的性能,然后使用第二热力学定律在不同的工作条件下评估。还研究了工作温度和太阳照射的影响作为关键操作参数。此外,采用遗传算法来确定最小热力学不可逆转性的最佳工作条件。结果表明,使用960 MJ / D入射太阳能,该系统产生896 KJ / D电能,177kg / d蒸馏水和29,000kg / d热水。集成系统的最大能量和漏极效率分别为46%和1.5%。该研究的结果证实了这种系统进行住宅应用的适用性。 (c)2016 Elsevier Ltd.保留所有权利。

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