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Effects of Clouds on Surface Shortwave Irradiance in China: Estimation by Surface Radiation Measurements and Satellite Data

机译:云对中国地面短波辐照度的影响:通过地面辐射测量和卫星数据估算

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 Clouds affect shortwave irradiance and the energy budget at the Earth’s surface. We investigated the potential radiative forcing in China by applying simple linear regression analysis on pyranometer measurements and data from the International Satellite Cloud Climatology Project (ISCCP). The potential radiative forcing is a measure of sensitivity of the surface shortwave irradiance to atmospheric parameters (here, cloud amount and cloud optical thickness). The negative correlation between the potential radiative forcing of cloud amount and cloud optical thickness strengthens with an increase in the cloud optical thickness up to about 8, after which it weakens. In contrast, the correlation coefficient between the cloud optical thickness and its potential radiative forcing varies widely for a low optical thickness and converges to a small negative value with an increase in the optical thickness; this is particularly true for data from the South and East regions. The potential radiative forcings obtained by analyzing pyranometer observation data are consistent with those calculated from ISCCP data in the previous study.
机译:云会影响短波辐照度和地球表面的能量收支。我们通过对总辐射表的测量值和国际卫星云气候学项目(ISCCP)的数据进行简单的线性回归分析,研究了中国的潜在辐射强迫。潜在的辐射强迫是表面短波辐照度对大气参数(此处为云量和云光学厚度)的敏感性的量度。云量的潜在辐射强迫与云光学厚度之间的负相关性随着云光学厚度的增加而增强,直至达到约8,之后它减弱。相反,对于低光学厚度,云光学厚度与其潜在的辐射强迫之间的相关系数变化很大,并且随着光学厚度的增加收敛到较小的负值;对于来自南部和东部地区的数据尤其如此。通过分析总辐射表观测数据获得的潜在辐射强迫与先前研究中从ISCCP数据计算得出的一致。

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