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Evaporation suppression and solar energy collection in a salt-gradient solar pond

机译:盐梯度太阳能池中的蒸发抑制和太阳能收集

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摘要

Evaporation represents a significant challenge to the successful operation of solar ponds. In this work, the suppression of evaporative losses from a salt-gradient solar pond was investigated in the laboratory. Two floating element designs (floating discs and floating hemispheres) and a continuous cover were tested; all three covers/elements were non-opaque, which is unique from previous studies of evaporation suppression in ponds or pools where increasing temperature and heat content are not desired. It was found that floating discs were the most effective element; full (88%) coverage of the solar pond with the floating discs decreases the evaporation rate from 4.8 to 2.5 mm/day (47% decrease), increases the highest achieved temperature from 34 ℃ to 43 ℃ (26% increase), and increases heat content from 179 to 220 MJ (22% increase). As a result of reduced evaporative losses at the surface, the amount of heat lost to the atmosphere is also reduced, which results in lower conductive losses from the NCZ and the LCZ and hence, increased temperatures in the NCZ and LCZ. The magnitude of evaporation reduction observed in this work is important as it may enable solar pond operation in locations with limited water supply for replenishment. The increase in heat content allows more heat to be withdrawn from the pond for use in external applications, which significantly improves the thermal efficiencies of solar ponds.
机译:蒸发对太阳能池的成功运行提出了重大挑战。在这项工作中,在实验室中研究了抑制盐梯度太阳能池蒸发损失的方法。测试了两个浮动元素设计(浮动圆盘和浮动半球)和连续的覆盖层;这三个覆盖物/元素都不是不透明的,这是以前对不需要增加温度和热量的池塘或水池中蒸发抑制作用的研究所独有的。人们发现,浮盘是最有效的元素。浮盘完全覆盖(88%)太阳池,使蒸发速率从4.8减少到2.5 mm / day(减少47%),将最高达到温度从34℃增加到43℃(增加26%),并增加热量从179到220 MJ(增加22%)。由于减少了表面的蒸发损失,还减少了向大气损失的热量,从而降低了NCZ和LCZ的传导损耗,从而提高了NCZ和LCZ的温度。在这项工作中观察到的蒸发减少的幅度很重要,因为它可以使太阳能水池在补给水供应有限的地方运行。热量含量的增加允许从池中提取更多的热量以用于外部应用,从而显着提高了太阳能池的热效率。

著录项

  • 来源
    《Solar Energy》 |2014年第1期|36-46|共11页
  • 作者单位

    Department of Civil and Environmental Engineering, University of Nevada, Reno. 1664 N. Virginia St. MS 258, Reno, NV 89557, USA;

    Department of Hydraulic and Environmental Engineering, Pontificia Universidad Catolica de Chile, Av. Vicuna Mackenna, 4860 Santiago, Chile;

    Department of Geological Sciences and Engineering, University of Nevada, Reno. 1664 N. Virginia St. MS 172. Reno. NV 89557, USA;

    Astani Department of Civil and Environmental Engineering. University of Southern California, 3260 South Vermont Ave.,KAP 210, Los Angeles, CA 90089-2531, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salt-gradient solar pond; Solar energy; Evaporation suppression; Transparent pond covers; Distributed temperature sensing;

    机译:盐梯度太阳能池;太阳能;蒸发抑制;透明的池塘盖;分布式温度感测;

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