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Effects of diabatic and adiabatic processes on relative humidity in a GCM, and relationship between mid-tropospheric vertical wind and cloud-forming and cloud-dissipating processes

机译:绝热和绝热过程对GCM相对湿度的影响以及对流层垂直风与云形成和云消散过程之间的关系

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Clouds play an important role in weather and climate. Therefore, it is important to quantify the dominant processes that influence cloud formation and dissolution. In this study, diagnostics of the relative humidity tendency in the ECHAM6 GCM are used to quantify the contribution of different atmospheric processes to the change in relative humidity and thus to quantify their impact on clouds. In the model, we find that the dominant processes are stratiform cloud microphysics, large-scale adiabatic horizontal advection and vertical motion, and cumulus convection. Tendencies calculated based on monthly mean fields approximate the monthly averages of instantaneous tendencies to within 50% in the mid-latitudes and 25% elsewhere. The correlation between the relative humidity tendencies and mid-tropospheric vertical velocity ω500 is analysed. The most important processes for cloud formation are tightly correlated with ω500; the monthly mean vertical velocity in most cases appears qualitatively useful to characterise the cloud-forming and cloud-dissipating processes.
机译:云在天气和气候中起着重要作用。因此,重要的是量化影响云形成和溶解的主要过程。在这项研究中,ECHAM6 GCM中相对湿度趋势的诊断被用于量化不同大气过程对相对湿度变化的贡献,从而量化它们对云的影响。在该模型中,我们发现主要过程是层状云微物理学,大规模绝热水平对流和垂直运动以及积云对流。根据月平均场计算得出的趋势在中纬度地区将瞬时趋势的月平均值近似为50%以内,其他地区为25%。分析了相对湿度趋势与对流层中层垂直速度ω500之间的关系。形成云的最重要过程与ω500紧密相关。在大多数情况下,月平均垂直速度在质量上似乎对表征云形成和云消散过程很有用。

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