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不均匀螺旋度产生大规模流。

Large-scale flow generation by inhomogeneous helicity.

机构信息

Institute of Industrial Science, University of Tokyo, Tokyo, Japan.

Nordita, KTH Royal Institute of Technology and Stockholm University, SE-10691 Stockholm, Sweden; Department of Astronomy, Stockholm University, SE-10691 Stockholm, Sweden; and JILA and Department of Astrophysical and Planetary Sciences, Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado 80303, USA.

出版信息

Phys Rev E. 2016 Mar;93(3):033125. doi: 10.1103/PhysRevE.93.033125. Epub 2016 Mar 28.

Abstract

The effect of kinetic helicity (velocity-vorticity correlation) on turbulent momentum transport is investigated. The turbulent kinetic helicity (pseudoscalar) enters the Reynolds stress (mirror-symmetric tensor) expression in the form of a helicity gradient as the coupling coefficient for the mean vorticity and/or the angular velocity (axial vector), which suggests the possibility of mean-flow generation in the presence of inhomogeneous helicity. This inhomogeneous helicity effect, which was previously confirmed at the level of a turbulence- or closure-model simulation, is examined with the aid of direct numerical simulations of rotating turbulence with nonuniform helicity sustained by an external forcing. The numerical simulations show that the spatial distribution of the Reynolds stress is in agreement with the helicity-related term coupled with the angular velocity, and that a large-scale flow is generated in the direction of angular velocity. Such a large-scale flow is not induced in the case of homogeneous turbulent helicity. This result confirms the validity of the inhomogeneous helicity effect in large-scale flow generation and suggests that a vortex dynamo is possible even in incompressible turbulence where there is no baroclinicity effect.

摘要

研究了动理学螺旋度(速度-涡度相关)对湍流动量传输的影响。湍流动理学螺旋度(赝标量)以螺旋度梯度的形式进入雷诺应力(镜像对称张量)表达式,作为平均涡度和/或角速度(轴向矢量)的耦合系数,这表明在存在非均匀螺旋度的情况下可能产生平均流。这种非均匀螺旋度效应之前在湍流或封闭模型模拟的水平上得到了证实,利用外部强迫维持的非均匀螺旋度的旋转湍流的直接数值模拟来检验。数值模拟表明,雷诺应力的空间分布与与角速度相关的螺旋度相关项一致,并且在角速度的方向上产生了大尺度流动。在均匀湍流螺旋度的情况下,不会产生这种大尺度流动。这一结果证实了大尺度流动产生中非均匀螺旋度效应的有效性,并表明即使在没有斜压性效应的不可压缩湍流中,涡旋发电机也是可能的。

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