...
首页> 外文期刊>Atmospheric chemistry and physics >A review of the theoretical basis for bulk mass flux convective parameterization
【24h】

A review of the theoretical basis for bulk mass flux convective parameterization

机译:整体质量通量对流参数化理论基础综述

获取原文
获取原文并翻译 | 示例
           

摘要

Most parameterizations for precipitating convection in use today are bulk schemes, in which an ensemble of cumulus elements with different properties is modelled as a single, representative entraining-detraining plume. We review the underpinning mathematical model for such parameterizations, in particular by comparing it with spectral models in which elements are not combined into the representative plume. The chief merit of a bulk model is that the representative plume can be described by an equation set with the same structure as that which describes each element in a spectral model. The equivalence relies on an ansatz for detrained condensate introduced by Yanai et al. (1973) and on a simplified microphysics. There are also conceptual differences in the closure of bulk and spectral parameterizations. In particular, we show that the convective quasi-equilibrium closure of Arakawa and Schubert (1974) for spectral parameterizations cannot be carried over to a bulk parameterization in a straightforward way. Quasi-equilibrium of the cloud work function assumes a timescale separation between a slow forcing process and a rapid convective response. But, for the natural bulk analogue to the cloud-work function, the relevant forcing is characterised by a different timescale, and so its quasi-equilibrium entails a different physical constraint. Closures of bulk parameterizations that use a parcel value of CAPE do not suffer from this timescale issue. However, the Yanai et al. (1973) ansatz must be invoked as a necessary ingredient of those closures.
机译:当今使用的用于对流降水的大多数参数化都是整体方案,其中将具有不同特性的积云元素集合建模为单个代表性的引诱烟羽。我们审查了此类参数化的基础数学模型,尤其是将其与未将元素组合到代表性羽流中的光谱模型进行了比较。体模型的主要优点是,可以通过方程组描述代表性羽状流,该方程组的结构与描述光谱模型中每个元素的结构相同。等效性取决于Yanai等人引入的ansatz脱除冷凝水。 (1973)和简化的微物理学。批量参数设置和频谱参数设置的关闭也存在概念差异。特别地,我们表明,对于频谱参数化,Arakawa和Schubert(1974)的对流准平衡闭包不能以直接的方式延续到整体参数化。云功函数的拟均衡假设在慢强迫过程和快速对流响应之间存在时间尺度上的分离。但是,对于类似于云工作功能的自然批量模拟,相关的强迫具有不同的时间尺度,因此其准平衡带来了不同的物理约束。使用CAPE宗地值的批量参数设置的关闭不会遇到此时间范围问题。然而,柳井等。 (1973)必须将ansatz作为这些关闭的必要组成部分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号