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An examination of convective moistening of the lower stratosphere using satellite data

机译:利用卫星数据检查平流层下部的对流增湿

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AbstractIn this paper, we use satellite data to test the hypothesis that deep convection moistens the lower stratosphere. Water vapor measurements from Earth Observing System-Microwave Limb Sounder and Atmospheric Chemistry Experiment-Fourier Transform Spectrometer over North America are binned according to the International Satellite Cloud Climatology Project deep convection indices. The results show that in the North American region (50–112°W, 10–50°N) the convection-impacted samples are significantly moister than the nonimpact samples in the lowermost stratospheric layer right above the tropopause, and a drier tendency is also noticed right above this moistened layer. Trajectory modeling is used to aid the identification of deep convection-impacted water vapor samples. However, we find that a substantial fraction of high-concentration (8 ppmv) samples at 100 hPa cannot be attributed to nearby deep convections.
机译:摘要在本文中,我们使用卫星数据来检验深对流湿润低平流层的假设。根据国际卫星云气候项目的深对流指数,对来自地球观测系统-微波四肢测深仪和大气化学实验-傅立叶变换光谱仪的水汽测量结果进行了分类。结果表明,在北美地区(50–112°W,10–50°N),对流撞击样品比对流层顶上方最平流层最低层的非撞击样品明显湿润,并且干燥趋势也注意到在该湿润层的正上方。轨迹建模用于帮助识别受深对流影响的水蒸气样品。但是,我们发现,在100 hPa的高浓度(> 8 ppmv)样品中,很大一部分不能归因于附近的深对流。

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