Characterization of coherent structures in three-dimensional flows using the finite-size Lyapunov exponent
arXiv:1207.1975 · doi:10.1088/1751-8113/46/25/254022
Abstract
In this paper we use the finite size Lyapunov Exponent (FSLE) to characterize Lagrangian coherent structures in three-dimensional (3d) turbulent flows. Lagrangian coherent structures act as the organizers of transport in fluid flows and are crucial to understand their stirring and mixing properties. Generalized maxima (ridges) of the FSLE fields are used to locate these coherent structures. Three-dimensional FSLE fields are calculated in two phenomenologically distinct turbulent flows: a wall-bounded flow (channel flow) and a regional oceanic flow obtained by numerical solution of the primitive equations where two-dimensional turbulence dominates. In the channel flow, autocorrelations of the FSLE field show that the structure is substantially different from the near wall to the mid-channel region and relates well to the more widely studied Eulerian coherent structure of the turbulent channel flow. The ridges of the FSLE field have complex shapes due to the 3d character of the turbulent fluctuations. In the oceanic flow, strong horizontal stirring is present and the flow regime is similar to that of 2d turbulence where the domain is populated by coherent eddies that interact strongly. This in turn results in the presence of high FSLE lines throughout the domain leading to strong non-local mixing. The ridges of the FSLE field are quasi-vertical surfaces, indicating that the horizontal dynamics dominates the flow. Indeed, due to rotation and stratification, vertical motions in the ocean are much less intense than horizontal ones. This suppression is absent in the channel flow, as the 3d character of the FSLE ridges shows.
References in corpus (5)
- Mixing structures in the Mediterranean Sea from Finite-Size Lyapunov Exponents
- Top marine predators track Lagrangian coherent structures
- Comparison between Eulerian diagnostics and finite-size Lyapunov exponents computed from altimetry in the Algerian basin
- How reliable are Finite-Size Lyapunov Exponents for the assessment of ocean dynamics?
- Oceanic three-dimensional Lagrangian Coherent Structures: A study of a mesoscale eddy in the Benguela ocean region
Cited by in corpus (9)
- A Critical Comparison of Lagrangian Methods for Coherent Structure Detection
- Hyperbolic and Elliptic Transport Barriers in Three-Dimensional Unsteady Flows
- Do Finite-Size Lyapunov Exponents Detect Coherent Structures?
- Characterization of the structure and cross-shore transport properties of a coastal upwelling filament using three-dimensional finite-size Lyapunov exponents
- Local characterization of transient chaos on finite times in open systems
- Characteristic signatures of Northern Hemisphere blocking events in a Lagrangian flow network representation of the atmospheric circulation
- Reference map technique for Lagrangian exploration of coherent structures
- Network and geometric characterization of three-dimensional fluid transport between two layers
- Uncertainty Growth in Stably Stratified Turbulence