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Heat extraction methods from salinity-gradient solar ponds and introduction of a novel system of heat extraction for improved efficiency

机译:从盐度梯度太阳能池中提取热量的方法,以及引入新型提取热量的系统以提高效率

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摘要

Heat has generally been successfully extracted from the lower convective zone (LCZ) of solar ponds by two main methods. In the first, hot brine from the LCZ is circulated through an external heat exchanger, as tested and demonstrated in El Paso and elsewhere. In the second method, a heat transfer fluid circulates in a closed cycle through an in-pond heat exchanger, as used in the Pyramid Hill solar pond, in Victoria, Australia. Based on the experiences at the El Paso and Pyramid Hill solar ponds, the technical specifications, material selection, stability control, clarity maintenance, salt management and operating strategies are presented. A novel method of extracting heat from a solar pond is to draw the heat from the gradient layer. This method is analysed theoretically and results of an experimental investigation at Bundoora East, RMIT, are presented. An in-pond heat exchanger made of polyethylene pipe has been used to extract heat for over 2 months. Results indicate that heat extraction from the gradient layer increases the overall energy efficiency of the solar pond by up to 55%, compared with conventional method of heat extraction solely from the LCZ. The experimental results are compared with the theoretical analysis. A close agreement has been found. From this small-scale experimental study, convection currents were found to be localised only and the density profiles were unaffected. An experimental study using an external heat exchanger for brine extraction and re-injection at different levels within the gradient layer still needs to be conducted to determine the effect of the heat extraction from the non-convective zone (NCZ) on the stability of the salinity gradient (both vertically and horizontally) and an economic analysis needs to be conducted to determine the economic gains from increased thermal efficiency.
机译:通常已经通过两种主要方法成功地从太阳池的下部对流区(LCZ)提取了热量。首先,如在埃尔帕索(El Paso)和其他地方所测试和证明的,来自LCZ的热盐水通过外部热交换器循环。在第二种方法中,传热流体在封闭循环中循环通过一个桥式换热器,如澳大利亚维多利亚州的金字塔山太阳能池所使用的那样。根据埃尔帕索(El Paso)和金字塔山(Pyramid Hill)太阳池的经验,介绍了技术规格,材料选择,稳定性控制,透明度维护,盐管理和操作策略。从日光池提取热量的新方法是从梯度层吸收热量。从理论上分析了该方法,并提出了RMIT Bundoora East的实验研究结果。由聚乙烯管制成的中点式换热器已用于吸收热量超过2个月。结果表明,与传统的仅从LCZ进行热提取的方法相比,从梯度层进行的热提取使太阳能池的整体能效提高了55%。将实验结果与理论分析进行比较。找到了一个密切的协议。通过这项小规模的实验研究,发现对流仅局部化,密度分布不​​受影响。仍需要进行使用外部热交换器在梯度层内不同高度进行盐水提取和再注入的实验研究,以确定非对流区(NCZ)的热量提取对盐度稳定性的影响。梯度(垂直和水平方向)和经济分析需要确定,以提高热效率来获得经济利益。

著录项

  • 来源
    《Solar Energy》 |2011年第12期|p.3103-3142|共40页
  • 作者单位

    Energy Conservation and Renewable Energy Group, School of Aerospace, Mechanical and Manufacturing Engineering, RM1T University, P.O. Box 71, Bundoora, Victoria 3083, Australia;

    Energy Conservation and Renewable Energy Group, School of Aerospace, Mechanical and Manufacturing Engineering, RM1T University, P.O. Box 71, Bundoora, Victoria 3083, Australia;

    Energy Conservation and Renewable Energy Group, School of Aerospace, Mechanical and Manufacturing Engineering, RM1T University, P.O. Box 71, Bundoora, Victoria 3083, Australia;

    College of Engineering, The University of Texas at El Paso, 500 W University Avenue, El Paso, TX 79968, USA;

    College of Engineering, The University of Texas at El Paso, 500 W University Avenue, El Paso, TX 79968, 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

    solar pond; heat extraction; monitoring system; liner; clarity maintenance; salt-gradient;

    机译:太阳池散热监视系统;衬垫;清晰度维护;盐梯度;
  • 入库时间 2022-08-18 00:26:10

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