A theory for the emergence of coherent structures in beta-plane turbulence
arXiv:1303.6435 · doi:10.1017/jfm.2013.663
Abstract
Planetary turbulent flows are observed to self-organize into large scale structures such as zonal jets and coherent vortices. One of the simplest models of planetary turbulence is obtained by considering a barotropic flow on a beta-plane channel with turbulence sustained by random stirring. Non-linear integrations of this model show that as the energy input rate of the forcing is increased, the homogeneity of the flow is broken with the emergence of non-zonal, coherent, westward propagating structures and at larger energy input rates by the emergence of zonal jets. We study the emergence of non-zonal coherent structures using a non-equilibrium statistical theory, Stochastic Structural Stability Theory (S3T, previously referred to as SSST). S3T directly models a second order approximation to the statistical mean turbulent state and allows identification of statistical turbulent equilibria and study of their stability. Using S3T, the bifurcation properties of the homogeneous state in barotropic beta-plane turbulence are determined. Analytic expressions for the zonal and non-zonal large scale coherent flows that emerge as a result of structural instability are obtained. Through numerical integrations of the S3T dynamical system, it is found that the unstable structures equilibrate at finite amplitude. Numerical simulations of the nonlinear equations confirm the characteristics (scale, amplitude and phase speed) of the structures predicted by S3T.
submitted to Journal of Fluid Mechanics
References in corpus (6)
- Astrophysical Fluid Dynamics via Direct Statistical Simulation
- Kinetic theory of jet dynamics in the stochastic barotropic and 2D Navier-Stokes equations
- Zonal Flow as Pattern Formation
- Emergence and equilibration of jets in beta-plane turbulence: applications of Stochastic Structural Stability Theory
- Emergence of large scale structure in planetary turbulence
- Statistics of the General Circulation from Cumulant Expansions
Cited by in corpus (16)
- Color of turbulence
- Fluctuation-induced phase separation in metric and topological models of collective motion
- Recent Developments in Theories of Inhomogeneous and Anisotropic Turbulence
- Statistical state dynamics of jet/wave coexistence in barotropic beta-plane turbulence
- Multistability and rare spontaneous transitions in barotropic -plane turbulence
- S3T stability of the homogeneous state of barotropic beta-plane turbulence
- Generalised quasilinear approximations of turbulent channel flow: Part 1. Streamwise nonlinear energy transfer
- Large-scale-vortex dynamos in planar rotating convection
- Dimensional Reduction of Direct Statistical Simulation
- Vertically Sheared Horizontal Flow-Forming Instability in Stratified Turbulence: Analytical Linear Stability Analysis of Statistical State Dynamics Equilibria
- Joint Instability and Abrupt Nonlinear Transitions in a Differentially Rotating Plasma
- Statistical state dynamics of weak jets in barotropic beta-plane turbulence
- Low frequency modulation of jets in quasigeostrophic turbulence
- The quasilinear theory in the approach of long-range systems to quasi-stationary states
- Direct Statistical Simulation Using Generalised Cumulant Expansions
- A geometric interpretation of zonostrophic instability