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Direct estimation of the global distribution of vertical velocity within cirrus clouds

机译:卷云内垂直速度的全球分布的直接估计

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摘要

Cirrus clouds determine the radiative balance of the upper troposphere and the transport of water vapor across the tropopause. The representation of vertical wind velocity, W, in atmospheric models constitutes the largest source of uncertainty in the calculation of the cirrus formation rate. Using global atmospheric simulations with a spatial resolution of 7 km we obtain for the first time a direct estimate of the distribution of W at the scale relevant for cirrus formation, validated against long-term observations at two different ground sites. The standard deviation in W, σ w, varies widely over the globe with the highest values resulting from orographic uplift and convection, and the lowest occurring in the Arctic. Globally about 90% of the simulated σ w values are below 0.1 m s−1 and about one in 104 cloud formation events occur in environments with σ w > 0.8 m s−1. Combining our estimate with reanalysis products and an advanced cloud formation scheme results in lower homogeneous ice nucleation frequency than previously reported, and a decreasing average ice crystal concentration with decreasing temperature. These features are in agreement with observations and suggest that the correct parameterization of σ w is critical to simulate realistic cirrus properties.
机译:卷云决定了对流层上部的辐射平衡以及水蒸气在对流层顶的传输。大气模型中垂直风速W的表示形式是卷云形成速率计算中最大的不确定性来源。利用空间分辨率为7千米的全球大气模拟,我们首次获得了与卷云形成有关的尺度上W分布的直接估计值,并通过在两个不同地面站点的长期观测进行了验证。 W的标准偏差σw在全球范围内变化很大,其最高值是由地形隆起和对流引起的,而最低值发生在北极。在全球范围内,大约90%的模拟σw值低于0.1 -1 ,大约10 4 个云形成事件发生在σw> 0.8 ms −1 。将我们的估计值与再分析产品和先进的云形成方案相结合,可以使均匀冰的成核频率低于以前的报告,并且平均冰晶浓度随温度降低而降低。这些特征与观察结果一致,并表明正确的σw参数化对于模拟现实的卷云特性至关重要。

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