The three-dimensional transition of the wake flow behind a circular cylinder is studied in detail by direct numerical simulations using 3D incompressible N-S equations for Reynolds number ranging from 200 to 300. New features and vortex dynamics of the 3D transition of the wake are found and investigated. At Re = 200, the flow pattern is characterized by mode A instability. However, the spanwise characteristic length of the cylinder determines the transition features. Particularly for the specific spanwise characteristic length linear stable mode may dominate the wake in place of mode A and determine the spanwise phase difference of the primary vortices shedding. At Re = 250 and 300 it is found that the streamwise vortices evolve into a new...
The flow past a circular cylinder in the transitional regime at Re = 2000 has been thoroughly invest...
The numerical prediction of vortex-induced vibrations has been the focus of numerous investigations ...
The transition of the flow behind bluff bodies has been the main topic of research for many decades....
In the present paper, the spatio-temporal evolution of the vorticity field in the second wake instab...
In the present paper, the spatio-temporal evolution of the vorticity field in the second wake instab...
In the present paper, the spatio-temporal evolution of vorticity in the first wake instability, i.e....
The transition of the wake of a circular cylinder is investigated numerically via a stabilized finit...
Abstract In the present paper, the spatio-temporal evolution of the vorticity field in t...
Abstract In the present paper, the spatio-temporal evolution of the vorticity field in t...
The initially generated pure mode A, as a transitional stage, is investigated in the three-dimension...
The initially generated pure mode A, as a transitional stage, is investigated in the three-dimension...
Abstract The initially generated pure mode A, as a transitional stage, is investigated i...
The turbulent flow around a circular cylinder has been investigated at Re=5000Re=5000 using direct n...
Vortex shedding from an inclined circular cylinder at low values of Reynolds number (Re) is investig...
The spatial evolution of vortices and transition to three-dimensionality in the wake of a square cyl...
The flow past a circular cylinder in the transitional regime at Re = 2000 has been thoroughly invest...
The numerical prediction of vortex-induced vibrations has been the focus of numerous investigations ...
The transition of the flow behind bluff bodies has been the main topic of research for many decades....
In the present paper, the spatio-temporal evolution of the vorticity field in the second wake instab...
In the present paper, the spatio-temporal evolution of the vorticity field in the second wake instab...
In the present paper, the spatio-temporal evolution of vorticity in the first wake instability, i.e....
The transition of the wake of a circular cylinder is investigated numerically via a stabilized finit...
Abstract In the present paper, the spatio-temporal evolution of the vorticity field in t...
Abstract In the present paper, the spatio-temporal evolution of the vorticity field in t...
The initially generated pure mode A, as a transitional stage, is investigated in the three-dimension...
The initially generated pure mode A, as a transitional stage, is investigated in the three-dimension...
Abstract The initially generated pure mode A, as a transitional stage, is investigated i...
The turbulent flow around a circular cylinder has been investigated at Re=5000Re=5000 using direct n...
Vortex shedding from an inclined circular cylinder at low values of Reynolds number (Re) is investig...
The spatial evolution of vortices and transition to three-dimensionality in the wake of a square cyl...
The flow past a circular cylinder in the transitional regime at Re = 2000 has been thoroughly invest...
The numerical prediction of vortex-induced vibrations has been the focus of numerous investigations ...
The transition of the flow behind bluff bodies has been the main topic of research for many decades....