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The quest for the optimum angular-tilt of terrestrial solar panels or their angle-resolved annual insolation

机译:寻求最佳的地面太阳能电池板倾角或每年解决角度的角度

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Although solar energy is the fastest growing power technology, terrestrial solar panels typically fall behind their performance ratings established under standardised test-conditions. In particular, the angular-tilt of a panel can greatly affect its overall performance. Many studies thus aim to find the optimum tilt that maximises the annual insolation level. However, no widespread consensus has so far been found, partly because of different model assumptions applied. Here, a technique is proposed to use actual, historical solar spectra for the rigorous assessment of a panel's tilt at a specific site. By combining multiple, free-accessible satellite-retrieved data products, the total all-sky insolation levels are tracked with a minutely changing global (hemispherical) solar spectrum over many years. While time-resolved annual insolation profiles can considerably vary among each other, the solar angle-resolved profile turns out to be robust to climatic conditions and is even site-independent for latitude-tilted panels. These findings can potentially unlock innovative yield optimisation methods. Crown Copyright (c) 2020 Published by Elsevier Ltd. All rights reserved.
机译:尽管太阳能是增长最快的电源技术,但地面太阳能电池板通常落后于在标准测试条件下建立的性能等级。特别是面板的倾斜角度会极大地影响其整体性能。因此,许多研究旨在寻找使年度日照水平最大化的最佳倾斜度。但是,到目前为止,尚未找到广泛的共识,部分原因是采用了不同的模型假设。在这里,提出了一种使用实际的历史太阳光谱对面板在特定位置的倾斜度进行严格评估的技术。通过组合多个可免费获取的卫星检索数据产品,可以跟踪多年来多年变化的全球(半球)太阳光谱的总全日照水平。尽管时间分辨的年度日照剖面之间可以有很大的不同,但太阳角度分辨的剖面却证明对气候条件具有鲁棒性,甚至对于纬度倾斜的面板而言,其位置无关。这些发现可能会激发创新的产量优化方法。官方版权(c)2020,由Elsevier Ltd.发行。保留所有权利。

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