Transition to turbulence in wall-bounded flows: Where do we stand?
arXiv:1604.00840 · doi:10.1299/mer.15-00684
Abstract
In this essay, we recall the specificities of the transition to turbulence in wall-bounded flows and present recent achievements in the understanding of this problem. The transition is abrupt with laminar-turbulent coexistence over a finite range of Reynolds numbers, the transitional range. The archetypical cases of Poiseuille pipe flow and plane Couette flow are first reviewed at the phenomenological level, together with a few other flow configurations. Theoretical approaches are then examined with particular emphasis on the existence of special nontrivial solutions to the Navier-Stokes equations at finite distance from laminar flow. Dynamical systems theory is most appropriate to analyze their role, in particular with respect to the transient character of turbulence in the lower transitional range. The extensions needed to deal with the prominent spatiotemporal features of the transition are then discussed. Turbulence growth/decay in terms of statistical physics of many-body systems and the relevance of directed percolation as a stochastic process able to account for it are next scrutinized. To conclude, we advocate the recourse to well-designed modeling able to provide us with a conceptually coherent picture of the full transitional range and put forward some open issues.
to appear in "Mechanical Engineering Review", Vol. 3, No. 2, July 1st, 2016
References in corpus (11)
- The large deviation approach to statistical mechanics
- Turbulence transition and the edge of chaos in pipe flow
- The rise of fully turbulent flow
- A Universal Transition to Turbulence in Channel Flow
- Laminar-turbulent boundary in plane Couette flow
- Turbulent-laminar patterns in plane Poiseuille flow
- Spatiotemporal perspective on the decay of turbulence in wall-bounded flows
- On the transition to turbulence of wall-bounded flows in general, and plane Couette flow in particular
- Large scale flows in transitional plane Couette flow: a key ingredient of the spot growth mechanism
- Large scale flow around turbulent spots
- Laminar-turbulent patterning in wall-bounded shear flows: a Galerkin model
Cited by in corpus (8)
- Coarse graining the state space of a turbulent flow using periodic orbits
- Linear waves in sheared flows. Lower bound of the vorticity growth and propagation discontinuities in the parameters space
- Laminar-Turbulent Patterning in Transitional Flows
- Turbulent bifurcations in intermittent shear flows: from puffs to oblique stripes
- Transitional channel flow: A minimal stochastic model
- Intermittent "Turbulence" in a Many-body System
- Model for transitional turbulence in a planar shear flow
- Wave focusing and related multiple dispersion transitions in plane Poiseuille flows