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无剪切稳定分层流能量与通量收支湍流闭合理论中的内重力波

Internal gravity waves in the energy and flux budget turbulence-closure theory for shear-free stably stratified flows.

作者信息

Kleeorin N, Rogachevskii I, Soustova I A, Troitskaya Yu I, Ermakova O S, Zilitinkevich S

机构信息

Department of Mechanical Engineering, Ben-Gurion University of the Negev, P. O. B. 653, Beer-Sheva 8410530, Israel.

Nordita, Stockholm University and KTH Royal Institute of Technology, 10691 Stockholm, Sweden.

出版信息

Phys Rev E. 2019 Jun;99(6-1):063106. doi: 10.1103/PhysRevE.99.063106.

Abstract

We have advanced the energy and flux budget turbulence closure theory that takes into account a two-way coupling between internal gravity waves (IGWs) and the shear-free stably stratified turbulence. This theory is based on the budget equation for the total (kinetic plus potential) energy of IGWs, the budget equations for the kinetic and potential energies of fluid turbulence, and turbulent fluxes of potential temperature for waves and fluid flow. The waves emitted at a certain level propagate upward, and the losses of wave energy cause the production of turbulence energy. We demonstrate that due to the nonlinear effects more intensive waves produce more strong turbulence, and this, in turn, results in strong damping of IGWs. As a result, the penetration length of more intensive waves is shorter than that of less intensive IGWs. The anisotropy of the turbulence produced by less intensive IGWs is stronger than that caused by more intensive waves. The low-amplitude IGWs produce turbulence consisting up to 90% of turbulent potential energy. This resembles the properties of the observed high-altitude tropospheric strongly anisotropic (nearly two-dimensional) turbulence.

摘要

我们提出了能量和通量收支湍流闭合理论,该理论考虑了内重力波(IGW)与无剪切稳定分层湍流之间的双向耦合。该理论基于IGW总(动能加势能)能量的收支方程、流体湍流动能和势能的收支方程以及波和流体流动的位温湍流通量。在某一高度发射的波向上传播,波能量的损失导致湍流能量的产生。我们证明,由于非线性效应,更强的波会产生更强的湍流,这反过来又导致IGW的强烈阻尼。结果,更强的波的穿透长度比强度较弱的IGW的穿透长度短。强度较弱的IGW产生的湍流的各向异性比更强的波引起的各向异性更强。低振幅IGW产生的湍流中,湍流势能占比高达90%。这类似于观测到的高空对流层强各向异性(近二维)湍流的特性。

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