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Optimal orientation angles for maximizing energy yield for solar PV in Saudi Arabia

机译:最佳定向角,可最大程度地提高沙特阿拉伯太阳能光伏的发电量

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摘要

This paper uses research-quality, ground measurements of irradiance and temperature that are accurate to +/- 2% to estimate the electric energy yield of fixed solar modules for utility-scale solar power plants at 18 sites in Saudi Arabia. The calculation is performed for a range of tilt and azimuth angles and the orientation that gives the optimum annual energy yield is determined. A detailed analysis is presented for Riyadh including the impact of non-optimal tilt and azimuth angles on annual energy yield. It is also found that energy yield in March and October are higher than in April and September, due to milder operating temperatures of the modules. A similar optimization of tilt and azimuth is performed each month separately. Adjusting the orientation each month increases energy yield by 4.01% compared to the annual optimum, but requires considerable labour cost. Further analysis shows that an increase in energy yield of 3.63% can be obtained by adjusting the orientation at five selected times during the year, thus significantly reducing the labour requirement. The optimal orientation and corresponding energy yield for all 18 sites is combined with a site suitability analysis taking into account climate, topography and proximity to roads, transmission lines and protected areas. Six sites are selected as having high suitability and high energy yield: Albaha, Arar, Hail, Riyadh, Tabuk and Taif. For these cities the optimal tilt is only slightly higher than the latitude, however the optimum azimuth is from 20 degrees to 53 degrees degrees west of south due to an asymmetrical daily irradiance profile. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文使用研究质量,辐照度和温度的地面测量值(精确到+/- 2%)来估算沙特阿拉伯18个站点的公用事业规模太阳能发电厂的固定太阳能组件的电能产量。针对一定范围的倾斜角和方位角执行计算,并确定给出最佳年发电量的方向。对利雅得进行了详细分析,包括非最佳倾斜和方位角对年发电量的影响。还发现,由于模块的运行温度较温和,3月和10月的能源产量高于4月和9月。每个月分别进行类似的倾斜和方位优化。与年度最佳状态相比,每月调整方向可使能源产量提高4.01%,但需要大量的人工成本。进一步的分析表明,通过在一年中的五个选定时间调整方向,可以使能源产量提高3.63%,从而显着减少了劳动力需求。将所有18个站点的最佳方向和相应的能量产量与站点适应性分析相结合,其中要考虑气候,地形以及与道路,传输线和保护区的距离。选择了六个具有高适应性和高能源产量的地点:阿尔巴哈,阿拉尔,冰雹,利雅得,塔布克和塔伊夫。对于这些城市,最佳倾斜度仅比纬度略高,但是由于每日的辐照度分布不对称,最佳方位角在南方以西20度到53度之间。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2019年第4期|538-550|共13页
  • 作者单位

    Jubail Ind Coll, Dept Elect & Elect Engn Technol, Jubail Ind City, Saudi Arabia|Concordia Univ, CIISE, 1455 De Maisonneuve Blvd W, Montreal, PQ H3G 1M8, Canada;

    Concordia Univ, CIISE, 1455 De Maisonneuve Blvd W, Montreal, PQ H3G 1M8, Canada;

    Univ Ottawa, Telfer Sch Management, Ottawa, ON K1N 6N5, Canada|Univ Ottawa, Sunlab, Ottawa, ON K1N 6N5, Canada;

  • 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

    Solar irradiation; Solar PV; Optimal orientation; Tilt; Azimuth; Energy yield;

    机译:太阳辐射;太阳能光伏;最佳取向;倾斜;方位角;能量产生;

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