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首页> 外文期刊>Journal of Applied Meteorology and Climatology >The Annual Cycle of Earth Radiation Budget from Clouds and the Earth's Radiant Energy System (CERES) Data
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The Annual Cycle of Earth Radiation Budget from Clouds and the Earth's Radiant Energy System (CERES) Data

机译:来自云的地球辐射预算的年度周期和地球辐射能系统(CERES)数据

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The seasonal cycle of the Earth radiation budget is investigated by use of data from the Clouds and the Earth's Radiant Energy System (CERES). Monthly mean maps of reflected solar flux and Earth-emitted flux on a 10 equal-angle grid are used for the study. The seasonal cycles of absorbed solar radiation (ASR), outgoing longwave radiation (OLR), and net radiation are described by use of principal components for the time variations, for which the corresponding geographic variations are the empirical orthogonal functions. Earth's surface is partitioned into land and ocean for the analysis. The first principal component describes more than 95% of the variance in the seasonal cycle of ASR and the net radiation fluxes and nearly 90% of the variance of OLR over land. Because one term can express so much of the variance, principal component analysis is very useful to describe these seasonal cycles. The annual cycles of ASR are about 100 W m(-2) over land and ocean, but the amplitudes of OLR are about 27 W m(-2) over land and 15 W m(-2) over ocean. The magnitude of OLR and its time lag relative to that of ASR are important descriptors of the climate system and are computed for the first principal components. OLR lags ASR by about 26 days over land and 42 days over ocean. The principal components are useful for comparing the observed radiation budget with that computed by a model.
机译:利用来自云和地球辐射能系统(CERES)的数据调查了地球辐射预算的季节性周期。该研究使用了在10个等角网格上的反射太阳通量和地球发射通量的月平均图。吸收太阳辐射(ASR),外出长波辐射(OLR)和净辐射的季节性周期通过使用主成分来描述时间变化,其对应的地理变化是经验正交函数。地球表面被分为陆地和海洋以进行分析。第一个主要成分描述了ASR和净辐射通量的季节性周期中超过95%的变化,以及陆地上OLR的近90%的变化。因为一个项可以表达这么多的方差,所以主成分分析对于描述这些季节性周期非常有用。 ASR的年周期在陆地和海洋上约为100 W m(-2),但OLR的振幅在陆地上约为27 W m(-2),在海洋上约为15 W m(-2)。 OLR的大小及其相对于ASR的时间滞后是气候系统的重要描述,并针对第一个主要成分进行了计算。 OLR在陆地上比ASR滞后约26天,在海洋上滞后42天。主成分对于将观测到的辐射预算与模型计算的辐射预算进行比较很有用。

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