首页> 外文期刊>Boundary-Layer Meteorology >A Hierarchy of Energy- and Flux-Budget (EFB) Turbulence Closure Models for Stably-Stratified Geophysical Flows
【24h】

A Hierarchy of Energy- and Flux-Budget (EFB) Turbulence Closure Models for Stably-Stratified Geophysical Flows

机译:稳定分层地球物理流的能量和通量预算(EFB)湍流闭合模型的层次结构

获取原文
获取原文并翻译 | 示例

摘要

Here we advance the physical background of the energy- and flux-budget turbulence closures based on the budget equations for the turbulent kinetic and potential energies and turbulent fluxes of momentum and buoyancy, and a new relaxation equation for the turbulent dissipation time scale. The closure is designed for stratified geophysical flows from neutral to very stable and accounts for the Earth’s rotation. In accordance with modern experimental evidence, the closure implies the maintaining of turbulence by the velocity shear at any gradient Richardson number Ri, and distinguishes between the two principally different regimes: “strong turbulence” at ({Ri ll 1}) typical of boundary-layer flows and characterized by the practically constant turbulent Prandtl number Pr T; and “weak turbulence” at Ri > 1 typical of the free atmosphere or deep ocean, where Pr T asymptotically linearly increases with increasing Ri (which implies very strong suppression of the heat transfer compared to the momentum transfer). For use in different applications, the closure is formulated at different levels of complexity, from the local algebraic model relevant to the steady-state regime of turbulence to a hierarchy of non-local closures including simpler down-gradient models, presented in terms of the eddy viscosity and eddy conductivity, and a general non-gradient model based on prognostic equations for all the basic parameters of turbulence including turbulent fluxes.
机译:在此,我们基于动能和势能的湍流动量和浮力的通量预算方程,以及湍流耗散时间尺度的新松弛方程,基于能量和通量预算湍流闭合的物理背景。该封闭装置设计用于从中性到非常稳定的分层地球物理流,并解释了地球的自转。根据现代实验证据,这种闭合意味着在任何坡度的理查森数Ri处通过速度剪切来维持湍流,并区分了两种主要不同的状态:({Ri ll 1})典型的边界处的“强湍流”-层流,其特征是湍流的普朗特数Pr T几乎恒定。和“ Ri> 1”处的“弱湍流”,这是自由大气层或深海的典型特征,其中Pr T随着Ri的增加而渐近线性增加(与动量传递相比,这意味着对热量传递的抑制作用非常强)。为了在不同的应用中使用,以不同的复杂度来制定闭包,从与稳态湍流状态相关的局部代数模型到非局部闭包的层次结构(包括更简单的向下梯度模型),按照涡流粘度和涡流电导率,以及基于预后方程的湍流所有基本参数(包括湍流)的通用非梯度模型。

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