Anisotropy of Unstably Stratified Near-Surface Turbulence

被引:0
|
作者
Ivana Stiperski
Marcelo Chamecki
Marc Calaf
机构
[1] University of Innsbruck,Department of Atmospheric and Cryospheric Sciences
[2] University of California Los Angeles,Department of Atmospheric and Oceanic Sciences
[3] University of Utah,Department of Mechanical Engineering
来源
Boundary-Layer Meteorology | 2021年 / 180卷
关键词
Complex terrain; Reduced turbulence-kinetic-energy budget; Similarity scaling; Surface layer; Turbulence time scales;
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中图分类号
学科分类号
摘要
Classic Monin–Obukov similarity scaling states that in a stationary, horizontally homogeneous flow, in the absence of subsidence, turbulence is dictated by the balance between shear production and buoyancy production/destruction, whose ratio is characterized by a single universal scaling parameter. An evident breakdown in scaling is observed though, through large scatter in traditional scaling relations for the horizontal velocity variances under unstable stratification, or more generally in complex flow conditions. This breakdown suggests the existence of processes other than local shear and buoyancy that modulate near-surface turbulence. Recent studies on the role of anisotropy in similarity scaling have shown that anisotropy, even if calculated locally, may encode the information about these missing processes. We therefore examine the possible processes that govern the degree of anisotropy in convective conditions. We first use the reduced turbulence-kinetic-energy budget to show that anisotropy in convective conditions cannot be uniquely described by a balance of buoyancy and shear production and dissipation, but that other terms in the budget play an important role. Subsequently, we identify a ratio of local time scales that acts as a proxy for the anisotropic state of convective turbulence. This ratio can be used to formulate a new non-dimensional group. Results show that building on this approach the role of anisotropy in scaling relations over complex terrain can be placed into a more generalized framework.
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页码:363 / 384
页数:21
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