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A New Parameterization for Shallow Cumulus Convection and Its Application to Marine Subtropical Cloud-Topped Boundary Layers. Part Ⅰ: Description and 1D Results

机译:浅层积云对流的新参数化及其在海洋亚热带云顶边界层中的应用。第一部分:描述和一维结果

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摘要

A new parameterization of shallow cumulus convection is presented. The parameterization consists of a mass flux scheme based on a buoyancy-sorting, entrainment-detrainment plume model. The mass flux scheme is coupled to a 1.5-order turbulence closure model with an entrainment closure for convective boundary layers. Model performance is verified using single-column-model simulations at relatively high vertical resolution of pure trade-cumulus convection and a cumulus to stratocumulus transition. Mixing rates, cloud cover, and vertical flux profiles, as deduced from previously published large-eddy simulation studies, are well reproduced by the parameterization. The model is used to demonstrate that height variations of lateral mixing rates can be successfully captured by a simple implementation of a buoyancy-sorting mechanism in the updraft cloud model. A companion paper describes the implementation of the scheme in a mesoscale model.
机译:提出了一种新的浅积云对流参数化方法。参数化包括基于浮力分类,夹带-减少羽流模型的质量通量方案。质量通量方案与带有对流边界层夹带封闭的1.5阶湍流封闭模型耦合。使用单列模型模拟以相对较高的垂直分辨率对纯贸易-积云对流以及积云到平流积云过渡进行了模型性能验证。由先前发表的大涡模拟研究推论得出的混合速率,云量和垂直通量剖面可以通过参数化很好地再现。该模型用于证明通过简单地实现升流云模型中的浮力分类机制,可以成功捕获横向混合速率的高度变化。随附的论文描述了中尺度模型中该方案的实现。

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