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What determines the distribution of ahallow convective mass flux through cloud base?

机译:是什么决定了通过云底的低流量对流质量通量的分布?

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摘要

The distribution of cloud-base mass flux is studied using large-eddy simulations (LESs) of two reference cases: one representing conditions over the tropical ocean and another one representing midlatitude conditions over land. To examine what sets the difference between the two distributions, nine additional LES cases are set up as variations of the two reference cases. It is found that the total surface heat flux and its changes over the diurnal cycle do not influence the distribution shape. The latter is also not determined by the level of organization in the cloud field. It is instead determined by the ratio of the surface sensible heat flux to the latent heat flux, that is, the Bowen ratio B. This ratio sets the thermodynamic efficiency of the moist convective heat cycle, which determines the portion of the total surface heat flux that can be transformed into mechanical work of convection against mechanical dissipation. The thermodynamic moist heat cycle sets the average mass flux per cloud 〈m〉, and through 〈m〉 it also controls the shape of the distribution. An expression for 〈m〉 is derived based on the moist convective heat cycle and is evaluated against LES. This expression can be used in shallow cumulus parameterizations as a physical constraint on the mass flux distribution. The similarity between the mass flux and the cloud area distributions indicates that B also has a role in shaping the cloud area distribution, which could explain its different shapes and slopes observed in previous studies.
机译:使用两种参考情况的大涡模拟(LES)研究了云基质量通量的分布:一种代表热带海洋条件,另一种代表陆地中纬度条件。为了检查是什么设置了两个分布之间的差异,设置了另外九个LES案例作为两个参考案例的变体。发现总的表面热通量及其在昼夜循环中的变化不会影响分布形状。后者也不取决于云领域的组织水平。相反,它由表面显热通量与潜热通量之比(即鲍文比B)确定。该比率设置了湿对流热循环的热力学效率,而热湿效率决定了总表面热通量的一部分可以转化为对流的机械功,以对抗机械耗散。热力学湿热循环设定每云的平均质量通量,并通过来控制分布的形状。 〈m〉的表达式是基于湿对流热循环得出的,并针对LES进行了评估。该表达式可以在浅积云参数化中用作对质量通量分布的物理约束。质量通量和云面积分布之间的相似性表明,B在塑造云面积分布方面也具有一定作用,这可以解释其在先前研究中观察到的不同形状和斜率。

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