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Observations of the diurnal cycle of outgoing longwave radiation from the Geostationary Earth Radiation Budget instrument

机译:对地静止地球辐射预算仪器对长波辐射的昼夜周期的观测

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摘要

The Geostationary Earth Radiation Budget instrument on Meteosat-8, located over Africa, provides unprecedented temporal sampling (~17 minutes) of the broadband emitted thermal and reflected solar radiances. We analyse the diurnal cycle of the outgoing longwave radiation (OLR) fluxes derived from the thermal radiances for July 2006. Principal component (PC) analysis separates the signals of the surface temperature response to solar heating and of the development of convective clouds. The first two PCs explain most of the OLR variations: PC1 (surface heating) explains 82.3% of the total variance and PC2 (cloud development) explains 12.8% of the variance. Convection is initiated preferentially over mountainous regions and the cloud then advects downstream in the ambient flow. Diurnal variations are much weaker over the oceans, but a coherent signal over the Gulf of Guinea suggests that the cloudiness is modulated by the diurnally varying contrast between the Gulf and the adjacent land mass.
机译:位于非洲上方的Meteosat-8上的地球静止地球辐射预算工具提供了宽带发射的热辐射和反射太阳辐射的空前时间采样(约17分钟)。我们分析了从2006年7月的热辐射得出的长波辐射(OLR)通量的昼夜周期。主成分(PC)分析将表面温度对太阳加热的响应和对流云的发展信号分开。前两个PC解释了大多数OLR变化:PC1(表面加热)解释了总方差的82.3%,PC2(云发展)解释了方差的12.8%。对流优先在山区启动,然后云在对流下游平流。海洋上的昼夜变化要弱得多,但是几内亚湾的连贯信号表明,多云度是由海湾与邻近陆地之间的昼夜变化的对比度调节的。

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