We report a direct-numerical-simulation study of the Taylor-Couette flow in the quasi-Keplerian regime at shear Reynolds numbers up to (105). Quasi-Keplerian rotating flow has been investigated for decades as a simplified model system to study the origin of turbulence in accretion disks that is not fully understood. The flow in this study is axially periodic and thus the experimental end-wall effects on the stability of the flow are avoided. Using optimal linear perturbations as initial conditions, our simulations find no sustained turbulence: the strong initial perturbations distort the velocity profile and trigger turbulence that eventually decays
Context. Subcritical transition to turbulence has been proposed as a source of turbulent viscosity r...
Aims.We present a qualitative analysis of key (but yet unappreciated) linear phenomena in stratified...
The emergence of turbulence in shear flows is a well-investigated field. Yet, there are some lingeri...
We report a direct-numerical-simulation study of the Taylor-Couette flow in the quasi-Keplerian regi...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
This paper deals with the problem of hydrodynamic shear turbulence in non-magnetized Keplerian disks...
8 pages, 1 figureThis paper deals with the problem of hydrodynamic shear turbulence in non-magnetize...
Taylor–Couette (TC) flow is used to probe the hydrodynamical (HD) stability of astrophysical accreti...
International audienceHydrodynamic unstratified Keplerian flows are known to be linearly stable at a...
Most flows in nature and engineering are turbulent because of their large velocities and spatial sca...
We numerically compute the flow of an electrically conducting fluid in a Taylor-Couette geometry whe...
Subcritical transition to turbulence has been proposed as a source of turbulent viscosity required f...
Turbulence is all around us. Even if we are familiar with every day instances of turbulence, like th...
International audienceThis paper provides a prescription for the turbulent viscosity in rotating she...
Context. Subcritical transition to turbulence has been proposed as a source of turbulent viscosity r...
Aims.We present a qualitative analysis of key (but yet unappreciated) linear phenomena in stratified...
The emergence of turbulence in shear flows is a well-investigated field. Yet, there are some lingeri...
We report a direct-numerical-simulation study of the Taylor-Couette flow in the quasi-Keplerian regi...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
This paper deals with the problem of hydrodynamic shear turbulence in non-magnetized Keplerian disks...
8 pages, 1 figureThis paper deals with the problem of hydrodynamic shear turbulence in non-magnetize...
Taylor–Couette (TC) flow is used to probe the hydrodynamical (HD) stability of astrophysical accreti...
International audienceHydrodynamic unstratified Keplerian flows are known to be linearly stable at a...
Most flows in nature and engineering are turbulent because of their large velocities and spatial sca...
We numerically compute the flow of an electrically conducting fluid in a Taylor-Couette geometry whe...
Subcritical transition to turbulence has been proposed as a source of turbulent viscosity required f...
Turbulence is all around us. Even if we are familiar with every day instances of turbulence, like th...
International audienceThis paper provides a prescription for the turbulent viscosity in rotating she...
Context. Subcritical transition to turbulence has been proposed as a source of turbulent viscosity r...
Aims.We present a qualitative analysis of key (but yet unappreciated) linear phenomena in stratified...
The emergence of turbulence in shear flows is a well-investigated field. Yet, there are some lingeri...