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Exergetic performance analysis of a salinity gradient solar pond

机译:盐度梯度太阳池的充能性能分析

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摘要

Solar pond technology is an effective and most economical way for converting and storing the solar heat energy. In this paper, numerical and experimental studies have been conducted for investigating the energy/exergy distributions and also efficiencies in the inner zones of a circular solar pond. For this purpose, a small scale solar pond with a circular cross-section was built and tested in Urmia University in Urmia-Iran. The height and area of the solar pond were equal to 1.1 m and 4 m(2), respectively. In the small solar ponds, the shading walls affects the accumulation of solar energy and thermal energy storage. Therefore, for achieving a complete understanding of the energy performance in the small solar ponds, a shading model is also developed for circular solar ponds. Therefore, by using the proper relations and considering the shading effect, energy and exergy efficiencies were analyzed in the inner zones of the pond. For lower convective zone, the highest energy and exergy efficiencies were obtained in the month of June and were equal to 9.37% and 0.76%, respectively. The results confirmed that most of the thermal energy is stored in the lower convective zone and it can be used in various applications.
机译:太阳池技术是转换和存储太阳热能的有效且最经济的方式。在本文中,已经进行了数值和实验研究,以研究圆形太阳池内部区域的能量/火用分布以及效率。为此,在伊朗乌尔米亚的乌尔米亚大学建造并测试了一个圆形横截面的小型太阳能水池。太阳池的高度和面积分别等于1.1 m和4 m(2)。在小型太阳能水池中,遮光墙会影响太阳能的积累和热能的存储。因此,为了完全了解小型太阳池的能量性能,还为圆形太阳池开发了一个遮光模型。因此,通过使用适当的关系并考虑遮光效果,对池塘内部区域的能量和火用效率进行了分析。对于较低的对流区,在6月份获得了最高的能量效率和火用效率,分别等于9.37%和0.76%。结果证实,大部分热能存储在较低的对流区中,并且可以用于各种应用中。

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