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EPIC Spectral Observations of Variability in Earth’s Global Reflectance

机译:EPIC光谱观测地球全球反射率的变化

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摘要

NASA’s Earth Polychromatic Imaging Camera (EPIC) onboard NOAA’s Deep Space Climate Observatory (DSCOVR) satellite observes the entire sunlit Earth every 65 to 110 min from the Sun–Earth Lagrangian L1 point. This paper presents initial EPIC shortwave spectral observations of the sunlit Earth reflectance and analyses of its diurnal and seasonal variations. The results show that the reflectance depends mostly on (1) the ratio between land and ocean areas exposed to the Sun and (2) cloud spatial and temporal distributions over the sunlit side of Earth. In particular, the paper shows that (a) diurnal variations of the Earth’s reflectance are determined mostly by periodic changes in the land–ocean fraction of its the sunlit side; (b) the daily reflectance displays clear seasonal variations that are significant even without including the contributions from snow and ice in the polar regions (which can enhance daily mean reflectances by up to 2 to 6% in winter and up to 1 to 4% in summer); (c) the seasonal variations of the sunlit Earth reflectance are mostly determined by the latitudinal distribution of oceanic clouds.
机译:美国国家航空航天局(NOAA)的深空气候观测站(DSCOVR)卫星上的NASA地球多色成像相机(EPIC)每隔65至110分钟从太阳地球拉格朗日L1点观测整个太阳照射的地球。本文介绍了日照地球反射率的初始EPIC短波光谱观测,并分析了其日变化和季节变化。结果表明,反射率主要取决于(1)暴露在阳光下的陆地和海洋区域之间的比率,以及(2)地球日照侧的云时空分布。特别是,该论文表明:(a)地球反射率的日变化主要由其日照侧的陆地-海洋部分的周期性变化决定; (b)日反射率显示出明显的季节性变化,即使不包括极地地区冰雪的影响,其季节性变化也很显着(在冬季,日平均反射率可提高2%至6%,在冬季可提高1-4%。夏天); (c)阳光照射的地球反射率的季节性变化主要取决于海洋云的纬度分布。

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