A spatially-developing plane mixing layer was analyzed for chaotic behavior. A direct numerical simulation of the Navier-Stokes equations in a 2-D domain infinite in y and having inflow-outflow boundary conditions in x was used for data. Spectra, correlation dimension and the largest Lyapunov exponent were computed as functions of downstream distance x. When forced at a single (fundamental) frequency with maximum amplitude, the flow is periodic at the inflow but becomes aperiodic with increasing x. The aperiodic behavior is caused by the presence of a noisy subharmonic caused by the feedback between the necessarily nonphysical inflow and outflow boundary conditions. In order to overshadow this noise the flow was also studied with the same f...
In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixi...
We present an investigation of the Lyapunov spectrum of the chaotic, separated flow around the NACA ...
The final report for grant number DE-FG03-98ER14891 summarizes the application of the unique simulat...
A two dimensional flow governed by the incompressible Navier-Stokes equations with a steady spatiall...
Using large-scale numerical calculations we explore spatiotemporal chaos in Rayleigh-Bénard convecti...
Several direct numerical simulations were performed and analyzed to study various aspects of the ear...
Describing turbulence has been one of the most important unsolved problems of physics for the last ...
Originally published in Physics of Fluids vol. 8 no. 5. Copyright of American Institute of Physics....
This work presents significant development into chaotic mixing induced through periodic boundaries a...
Coherent structures of two-dimensional supersonic turbulent mixing layers with the engineering backg...
A turbulent mixing layer in a water channel was observed at Reynolds numbers up to 3 × 10^6. Flow vi...
We investigate the impact of numerical discretization on the Lyapunov spectrum of separated flow sim...
Experiments on an externally forced free shear layer are performed which study the origin of three-d...
Several turbulent and nonturbulent solutions of the Navier-Stokes equations are obtained. The unaver...
In the last few years, more and more evidence has emerged suggesting that transition to turbulence m...
In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixi...
We present an investigation of the Lyapunov spectrum of the chaotic, separated flow around the NACA ...
The final report for grant number DE-FG03-98ER14891 summarizes the application of the unique simulat...
A two dimensional flow governed by the incompressible Navier-Stokes equations with a steady spatiall...
Using large-scale numerical calculations we explore spatiotemporal chaos in Rayleigh-Bénard convecti...
Several direct numerical simulations were performed and analyzed to study various aspects of the ear...
Describing turbulence has been one of the most important unsolved problems of physics for the last ...
Originally published in Physics of Fluids vol. 8 no. 5. Copyright of American Institute of Physics....
This work presents significant development into chaotic mixing induced through periodic boundaries a...
Coherent structures of two-dimensional supersonic turbulent mixing layers with the engineering backg...
A turbulent mixing layer in a water channel was observed at Reynolds numbers up to 3 × 10^6. Flow vi...
We investigate the impact of numerical discretization on the Lyapunov spectrum of separated flow sim...
Experiments on an externally forced free shear layer are performed which study the origin of three-d...
Several turbulent and nonturbulent solutions of the Navier-Stokes equations are obtained. The unaver...
In the last few years, more and more evidence has emerged suggesting that transition to turbulence m...
In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixi...
We present an investigation of the Lyapunov spectrum of the chaotic, separated flow around the NACA ...
The final report for grant number DE-FG03-98ER14891 summarizes the application of the unique simulat...