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Exergy analysis of solar central receivers

机译:太阳能中心接收器的漏洞分析

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摘要

A high-resolution method to analyse the exergy of the SPT external tubular receivers is presented, examining the different heat transfer process involved individually. This sheds light on the role that each irreversibility source plays in the outcome, aiding in the receiver design and the facility location selection. The exergy efficiency is around 32% in the base configuration. Besides the exergy loss in the heliostat field, over 40%, it is found that the biggest exergy destruction cause are the radiation emissions and absorptions in the tube outer surface, around 17%. From the remaining ones, the greatest are the exergy destructed in the HTF and the one escaping to the ambient (over 4% each). Then, the exergy balance for a variety of strategies and ambient conditions is performed: optical properties of the tubes coating, peak and flat aiming strategies, DNI and ambient temperature. The heliostat field exergy loss rate only varies when changing the aiming. However, the emission and absorption losses and the ones in the HTF suffer the greater modifications with all the parameters studied. The impact of the optical properties degradation, 1% descent in the efficiency per 5% degradation, would advise repainting works in order to avoid greater exergy destruction. The surroundings temperature modification impacts considerably the exergy efficiency, showing the suitability of locations with low ambient temperature and a moderate DNI: descends of over 0.35% occur every 5 degrees C increase of the temperature for a fixed DNI.
机译:提出了一种分析SPT外部管状接收器的漏洞的高分辨率方法,检查单独涉及的不同传热过程。这阐明了每个不可逆转的源在结果中扮演的角色,辅助接收器设计和设施位置选择。基本配置的高级效率约为32%。除了在60%以上的光晕场地的高度损失之外,发现最大的毁灭原因是管外表面的辐射排放和吸收,约为17%。从剩余的那些中,最伟大的是HTF中的暴力被破坏,并且逃到了环境(每次超过4%)。然后,进行了各种策略和环境条件的驱逐余额:管涂层,峰值和平面瞄准策略,DNI和环境温度的光学性质。在改变瞄准时,Heliostat领域无法变化。然而,HTF中的排放和吸收损失和HTF中的吸收损失与所研究的所有参数遭受更大的修改。光学性质的影响降解,在每5%降解的效率下降1%下降,将建议重新绘制作品,以避免更大的遭受破坏。周围环境温度修改会显着影响高度效率,显示环境温度低的位置和中等DNI:固定DNI温度的温度的增加每5摄氏度增加0.35%的下降。

著录项

  • 来源
    《Solar Energy》 |2020年第9期|957-973|共17页
  • 作者单位

    Univ Carlos III Madrid Dept Thermal & Fluid Engn Energy Syst Engn Grp ISE Av Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid Dept Thermal & Fluid Engn Energy Syst Engn Grp ISE Av Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid Dept Thermal & Fluid Engn Energy Syst Engn Grp ISE Av Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid Dept Thermal & Fluid Engn Energy Syst Engn Grp ISE Av Univ 30 Madrid 28911 Spain;

  • 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 power tower; External central receiver; Exergy efficiency; Radiation; Heat transfer;

    机译:太阳能塔;外部中央接收器;漏洞效率;辐射;传热;

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