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首页> 外文期刊>Journal of Fluid Mechanics >Statistical state dynamics of vertically sheared horizontal flows in two-dimensional stratified turbulence
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Statistical state dynamics of vertically sheared horizontal flows in two-dimensional stratified turbulence

机译:二维分层湍流中垂直剪切水平流量的统计状态动态

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Simulations of strongly stratified turbulence often exhibit coherent large-scale structures called vertically sheared horizontal flows (VSHFs). VSHFs emerge in both two-dimensional (2D) and three-dimensional (3D) stratified turbulence with similar vertical structure. The mechanism responsible for VSHF formation is not fully understood. In this work, the formation and equilibration of VSHFs in a 2D Boussinesq model of stratified turbulence is studied using statistical state dynamics (SSD). In SSD, equations of motion are expressed directly in the statistical variables of the turbulent state. Restriction to 2D turbulence facilitates application of an analytically and computationally attractive implementation of SSD referred to as S3T, in which the SSD is expressed by coupling the equation for the horizontal mean structure with the equation for the ensemble mean perturbation covariance. This second-order SSD produces accurate statistics, through second order, when compared with fully nonlinear simulations. In particular, S3T captures the spontaneous emergence of the VSHF and associated density layers seen in simulations of turbulence maintained by homogeneous large-scale stochastic excitation. An advantage of the S3T system is that the VSHF formation mechanism, which is wave-mean flow interaction between the emergent VSHF and the stochastically excited large-scale gravity waves, is analytically understood in the S3T system. Comparison with fully nonlinear simulations verifies that S3T solutions accurately predict the scale selection, dependence on stochastic excitation strength, and nonlinear equilibrium structure of the VSHF. These results constitute a theory for VSHF formation applicable to interpreting simulations and observations of geophysical examples of turbulent jets such as the ocean's equatorial deep jets.
机译:模拟强烈的湍流通常表现出称为垂直剪切水平流量(VSHF)的相干大规模结构。 VSHFS在二维(2D)和三维(3D)分层湍流中出现,具有相似的垂直结构。负责VSHF形成的机制尚未完全理解。在这项工作中,使用统计状态动态研究了分层湍流的2D Boussinesq模型中VSHFS的形成和平衡,研究了统计状态动态(SSD)。在SSD中,运动方程直接表达在湍流状态的统计变量中。对2D湍流的限制有助于应用称为S3T的分析和计算上有吸引力的SSD,其中SSD通过耦合水平平均结构的方程与集合均衡协方差的等式耦合。与完全非线性模拟相比,该二阶SSD通过二阶产生准确的统计数据。特别地,S3T捕获VSHF和相关密度层的自发出现,以均匀大规模随机激发维持的湍流模拟。 S3T系统的一个优点是在S3T系统中分析地理解了基于vshf和随机急性大规模重力波之间的波形平均流动相互作用的VSHF形成机制。与完全非线性模拟的比较验证S3T解决方案准确地预测刻度选择,依赖于VSHF的随机激励强度和非线性平衡结构。这些结果构成了VSHF形成的理论,适用于解释仿真和观察湍流喷射的湍流喷射的地球物理例子,例如海洋赤道深射流。

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