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Technical-economic study of cooled crystalline solar modules

机译:冷却晶体太阳能电池组件的技术经济研究

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摘要

Methods of cooling monocrystalline and polycrystalline solar modules with water vaporizing are analysed in the paper regarding the effects of temperature on performance and its economic relations. Since water usage may present a significant cost the aim of the research was to create a cooling system that operates without loss of flowing water. Results are evaluated from technical and economic points of view in relation to several countries based on systems with 5 kW capacity. Ideal setting of spray heads at 2 bar pressure was achieved with a distance of 0.26 m between the spray heads. In our experiment, a temperature following procedure was tested manually. Due to this procedure, the surface of the module can be cooled with an average temperature value that is calculated after cooling, depending on the temperature of the control solar module. Analysing the daily data of monthly production the number of "ideal days" in a given month were estimated. Comparing the temperature decrease as a result of vaporization measured in summer and in autumn showed no significant difference. The results achieved confirm the connection between temperature change and efficiency change of monocrystalline and polycrystalline solar modules (0.5%/1 degrees C), discussed in previous scientific literature. Effective application of solar module cooling systems is around 10-15% more expensive than the cost of systems without cooling. In general, under current economic conditions the operation of cooled solar modules is viable mainly in South European countries. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:本文针对温度对性能的影响及其经济关系,分析了利用水汽化冷却单晶和多晶太阳能组件的方法。由于用水可能会带来高昂的成本,因此研究的目的是创建一种冷却系统,该系统运行时不会流失水。从技术和经济角度对结果进行了评估,涉及的国家/地区基于容量为5 kW的系统。喷头之间的距离为0.26 m,可实现2 bar压力下喷头的理想设置。在我们的实验中,手动测试了温度跟随程序。通过此过程,可以根据控制太阳能模块的温度,以冷却后计算的平均温度值冷却模块的表面。通过分析月度生产的每日数据,可以估算出给定月份的“理想天数”。比较夏季和秋季由于汽化而导致的温度下降没有明显差异。获得的结果证实了单晶和多晶太阳能组件(0.5%/ 1摄氏度)的温度变化与效率变化之间的联系,在先前的科学文献中已有讨论。有效使用太阳能模块冷却系统的成本比不使用冷却系统的成本高出10-15%。通常,在当前的经济条件下,冷却的太阳能电池组件的运行主要在南欧国家中可行。 (C)2016作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Solar Energy》 |2016年第15期|227-235|共9页
  • 作者单位

    Univ Pannonia, Georgikon Fac, Deck Ferenc St 16, H-8360 Keszthely, Hungary;

    Univ Pannonia, Georgikon Fac, Deck Ferenc St 16, H-8360 Keszthely, Hungary;

    Univ Pannonia, Georgikon Fac, Deck Ferenc St 16, H-8360 Keszthely, Hungary;

    Univ Debrecen, Fac Econ, Boszormenyi St 138, H-4032 Debrecen, Hungary;

    Univ Debrecen, Fac Econ, Boszormenyi St 138, H-4032 Debrecen, Hungary;

    Univ Debrecen, Fac Econ, Boszormenyi St 138, H-4032 Debrecen, Hungary;

    Univ Debrecen, Fac Econ, Boszormenyi St 138, H-4032 Debrecen, Hungary;

    Szent Istvan Univ, Pater Karoly St 1, H-2103 Godollo, Hungary;

    Univ Pannonia, Georgikon Fac, Deck Ferenc St 16, H-8360 Keszthely, Hungary;

    Univ Debrecen, Fac Econ, Boszormenyi St 138, H-4032 Debrecen, Hungary;

  • 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 energy; Temperature dependence of performance; Water cooling; Vaporization;

    机译:太阳能;性能的温度依赖性;水冷却;汽化;

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