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Assessment of liquid metal technology status and research paths for their use as efficient heat transfer fluids in solar central receiver systems

机译:评估液态金属技术的现状及其在太阳能中央接收器系统中用作高效传热流体的研究途径

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摘要

Concentrated solar power, and in particular central receiver systems, can play a major role as a renewable energy source with the inherent possibility of including a thermal energy storage subsystem for improving the plant dispatchability. Next-generation systems, in an effort for increasing the overall efficiency and reducing specific costs, will require higher operating temperatures and larger heat flux densities. In that context, liquid metals as advanced heat transfer fluids can face those challenges and largely contribute to the economics of future systems. Liquid metals have been proposed in recent publications from a thermodynamic perspective. The present article focuses in a complementary way on the current state of liquid metal technology. Based on the main requirements and previous experiences, three main candidate liquid metals are considered: sodium (Na), lead-bismuth eutectic alloy (LBE or PbBi) and molten tin (Sn), each of them with relative advantages and limitations. The state-of-the-art is reviewed, indicating that the readiness of liquid metal technology is quite advanced, mainly for the two first candidates. Recommended research and development activities are outlined, mainly in two directions: compatibility with structural materials at high temperature and indirect thermal storage solutions. Overall, provided that some challenges can be overcome, significant advantages can be obtained from the use of liquid metals as heat transfer fluids in central receivers systems.
机译:集中式太阳能,尤其是中央接收器系统,可以作为可再生能源发挥主要作用,其固有的可能性是包括一个热能存储子系统,以改善工厂的可调度性。为了提高整体效率并降低特定成本,下一代系统将需要更高的工作温度和更大的热通量密度。在这种情况下,作为高​​级传热流体的液态金属将面临这些挑战,并为未来系统的经济发展做出巨大贡献。从热力学的观点,最近的出版物中已经提出了液态金属。本文以互补的方式关注液态金属技术的当前状态。根据主要要求和先前的经验,考虑了三种主要的候选液态金属:钠(Na),铅铋共晶合金(LBE或PbBi)和熔融锡(Sn),它们各自都有相对的优点和局限性。审查了最新技术,这表明液态金属技术的适用性已经相当先进,主要是针对前两个候选人。概述了推荐的研发活动,主要从两个方向进行概述:与高温下的结构材料的兼容性以及间接储热解决方案。总体而言,只要可以克服一些挑战,就可以将液态金属用作中央接收器系统中的传热流体,从而获得显着的优势。

著录项

  • 来源
    《Solar Energy》 |2013年第7期|11-22|共12页
  • 作者

    J. Pacio; Th. Wetzel;

  • 作者单位

    Karlsruhe Institute of Technology (KIT), Institute for Nuclear and Energy Technologies, Hermann-von-Helmholtz Platz 1, 76344,Eggenstein-Leopoldshafen, Germany;

    Karlsruhe Institute of Technology (KIT), Institute for Nuclear and Energy Technologies, Hermann-von-Helmholtz Platz 1, 76344,Eggenstein-Leopoldshafen, Germany;

  • 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

    Concentrated solar power; Central receiver system; Liquid metal; Heat transfer fluid;

    机译:集中太阳能;中央接收器系统;液态金属;传热液;

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