Heat extraction from gradient layer using external heat exchangers to enhance the overall efficiency of solar ponds

Y. Yaakob, A. Date, A. Akbarzadeh
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引用次数: 9

Abstract

A salinity gradient solar pond is a combined solar collector and thermal energy storage system, and in past heat has been successfully extracted from the lower convective zone (LCZ) in working ponds. This paper discusses possibility of heat extraction from the non convective zone (NCZ) using an external heat exchanger. Here, two methods of heat extraction from different levels within the NCZ using external heat exchanger are presented. The first method uses thermosyphon effect to transfer the heat from different levels in NCZ to the binary fluid. The second method uses pumps (forced convection) for heat extraction. This paper presents theoretical modeling and experimental results for thermosyphon based heat extraction method. Later theoretical predictions and experimental results have been compared. This investigation shows good prospects for application of this system for heat extraction from NCZ of large solar ponds. By extracting heat from the NCZ the efficiency of a solar pond could be increased up to 30%.
利用外置换热器从梯度层抽热,提高太阳能池整体效率
盐度梯度太阳能池是一种集热蓄热系统,在以往的工作池中已经成功地从下对流区(LCZ)提取了热量。本文讨论了采用外置换热器从非对流区(NCZ)抽热的可能性。本文介绍了两种利用外置换热器从NCZ内不同层次提取热量的方法。第一种方法是利用热虹吸效应将NCZ中不同能级的热量传递到二元流体中。第二种方法是使用泵(强制对流)来抽取热量。本文介绍了基于热虹吸的抽热方法的理论建模和实验结果。后来的理论预测和实验结果进行了比较。研究结果表明,该系统在大型太阳能池NCZ抽热中具有良好的应用前景。通过从NCZ中提取热量,太阳能池的效率可以提高到30%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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