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Impact of a solar eclipse on surface radiation and photovoltaic energy

机译:日食对表面辐射和光伏能量的影响

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We investigate the impact of annular solar eclipse (26 December 2019) on the surface radiation and photovoltaic (PV) energy generation observed at Gadanki (13.48 degrees N, 79.18 degrees E), located in southern peninsular India. Spectral and broadband irradiances are found to be sensitive to the solar obscuration, and follow the curvature resembling the fraction of non-obscured area of the Sun during the eclipse. Rapid changes are noticed in the spectral and broadband irradiances during the decreasing and increasing phases of solar obscuration. The diffuse fraction exhibits weak spectral dependence during the peak solar obscuration and under the influence of clouds. Although the deviation in the diffuse horizontal irradiance (DHI) at different wavelengths is highly sensitive, the deviations in the global horizontal irradiance (GHI) and direct normal irradiance (DNI) are found to be comparable among different wavelengths during the eclipse period. At peak obscuration, the reduction in both GHI and DNI shows an increasing trend from 414 nm to 671.2 nm. On the contrary, DHI decreases from 495.9 nm to 869 nm. Also, the deviation in broadband irradiances range between 72% and 98% with differing magnitudes of reduction at the peak obscuration. Apart from this, it is observed that the time of occurrence, strength of solar obscuration and prevailing sky conditions exhibit varying impact on the surface radiation components. The PV energy generated on the eclipse day is found to be reduced by 37% in comparison to that on a clear-sky day.
机译:我们调查环形日食(2019年12月26日)对Gadanki(13.48,79.18度E)观察到的表面辐射和光伏(PV)能源的影响,位于半岛印度南部的印度。发现光谱和宽带的辐射症被发现对太阳遮蔽敏感,并遵循在日食期间类似于太阳的非遮光区域的曲率的曲率。在太阳遮挡的阶段的阶段和增加期间,在光谱和宽带辐射期间注意到快速变化。漫反射率在峰值太阳遮蔽和云的影响下表现出弱光谱依赖性。尽管在不同波长的漫射水平辐照度(DHI)中的偏差是高度敏感的,但是在日食期间,发现全局水平辐照度(GHI)和直接正常辐照度(DNI)的偏差在不同波长之间进行比较。在抑制峰值遮挡时,GHI和DNI的减少显示了414nm至671.2nm的增加趋势。相反,DHI从495.9 nm降至869 nm。此外,宽带辐射率的偏差范围为72%至98%,峰值遮挡的不同幅度下降。除此之外,观察到发生的时间,太阳遮蔽和盛行的天空条件的发生时间对表面辐射成分产生不同的影响。与明确的天天相比,发现在日食日产生的光伏能量减少了37%。

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