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Measured and modelled improvement in solar energy yield from flat platephotovoltaic systems utilizing different tracking systems and under a rangeof environmental conditions

机译:在不同的环境条件下,利用不同的跟踪系统,对平板光伏系统产生的太阳能产量进行测量和建模改进

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摘要

This work is performed to investigate the effect of using different sun tracking mechanisms on the flat plate photovoltaic system performances and the main parameters affecting the amount of their electrical energy output as well as those affecting their gains compared to the traditional fixed photovoltaic systems. To this end, five configurations of sun tracking systems and two traditional fixed panels have been considered. The sun tracking systems effect on the PV system performances is improved by using the hourly data collected over 18 days for different seasonal sky conditions. The daily cumulative electrical energy produced by the different systems have been quantified separately for each sky state and the corresponding electrical gains have then been compared to those experienced with two traditional fixed photovoltaic systems. It is found that for a completely clear day, the highest obtained gains are those related to the two-axis sun tracker systems, which decrease gradually from the inclined to the vertical rotating axis when the same optimum slope is applied and from the seasonal to the yearly optimum slope if the same rotating axis is considered. On the other hand, for the partially clear days, the gain amounts are mainly dependant on the clearness index and on the seasonal variation of day length values. For a completely cloudy day, the results show that all considered systems produced closely the same electrical energy and the horizontal position of the photovoltaic panel presented the best performance.
机译:进行这项工作是为了研究使用不同的太阳跟踪机制对平板光伏系统性能的影响以及与传统固定光伏系统相比影响其电能输出量以及影响其收益的主要参数的主要参数。为此,已经考虑了五种配置的太阳跟踪系统和两个传统的固定面板。通过使用针对不同季节的天空情况在18天内收集的每小时数据,可以改善太阳跟踪系统对PV系统性能的影响。由不同系统产生的每日累积电能已针对每个天空状态分别进行了量化,然后将相应的电增益与两个传统的固定光伏系统所经历的电能进行了比较。发现在完全晴朗的一天,获得的最高增益是与两轴太阳跟踪器系统相关的增益,当应用相同的最佳坡度时,该增益从倾斜轴到垂直旋转轴逐渐减小,而从季节性到垂直。如果考虑相同的旋转轴,则为年度最佳斜率。另一方面,对于部分晴天,收益量主要取决于晴天指数和日长值的季节性变化。对于一个完全多云的日子,结果表明所有考虑的系统都产生几乎相同的电能,并且光伏面板的水平位置表现出最佳性能。

著录项

  • 来源
    《Applied Energy》 |2011年第5期|p.1756-1771|共16页
  • 作者单位

    Center of Renewable Energy Development, Postal Box 62, Observatory Road. Bouzareah, Algiers, Algeria;

    Promoting Renewable Energy Laboratory, Amar Teldji University, Postal Box 37C, Ghardaia Road, Laghouat 03000, Algeria;

    Laboratory of Industrial and Information Technology - Lll. University A. Mira, Beja'ia, Targa Ouzemmour, Beja'ia 06000, Algeria;

    Laboratory of Communication Equipments and Photovoltaic Energy Conversion, National Polytechnic School, Hassen Badi, El Harache, Algeria;

    Center of Renewable Energy Development, Postal Box 62, Observatory Road. Bouzareah, Algiers, Algeria;

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

    sun tracking; photovoltaic; cain; solar irradiation;

    机译:太阳跟踪;光伏;隐隐;太阳辐射;

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