We develop a new numerical method which treats resolved and sub-grid scales as two different fluid components evolving according to their own dynamical equations. These two fluids are nonlinearly interacting and can be transformed one into another when their scale becomes comparable to the grid size. Equations describing the two-fluid dynamics were rigorously derived from Euler equations [B. Dubrulle, S. Nazarenko, Physica D 110 (1997) 123-138] and they do not involve any adjustable parameters. The main assumption of such a derivation is that the large-scale vortices are so strong that they advect the sub-grid scales as a passive scalar, and the interactions of small scales with small and intermediate scales can be neglected. As a test for ...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
The recently derived Lagrangian-averaged Navier-Stokes equations model the large-scale flow of the N...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
We present numerical simulation of 2D turbulent flow using a new model for the subgrid scales which ...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
A two-length-scale turbulence model is introduced in this thesis for the computation of quasi-two-di...
grantor: University of TorontoThis thesis concerns how the dynamics of 2D fluid systems ma...
grantor: University of TorontoThis thesis concerns how the dynamics of 2D fluid systems ma...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
The effect of small-scale forcing on large-scale structures in β-plane two-dimensional (2D) turbulen...
The effect of small-scale forcing on large-scale structures in β-plane two-dimensional (2D) turbulen...
Numerical simulations of isotropic, homogeneous, forced and dissipative two-dimensional (2D) turbule...
Numerical simulations of isotropic, homogeneous, forced and dissipative two-dimensional (2D) turbule...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
The recently derived Lagrangian-averaged Navier-Stokes equations model the large-scale flow of the N...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
We present numerical simulation of 2D turbulent flow using a new model for the subgrid scales which ...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
We present numerical simulations of 2D turbulent flow using a new model for the subfilter scales whi...
A two-length-scale turbulence model is introduced in this thesis for the computation of quasi-two-di...
grantor: University of TorontoThis thesis concerns how the dynamics of 2D fluid systems ma...
grantor: University of TorontoThis thesis concerns how the dynamics of 2D fluid systems ma...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
The effect of small-scale forcing on large-scale structures in β-plane two-dimensional (2D) turbulen...
The effect of small-scale forcing on large-scale structures in β-plane two-dimensional (2D) turbulen...
Numerical simulations of isotropic, homogeneous, forced and dissipative two-dimensional (2D) turbule...
Numerical simulations of isotropic, homogeneous, forced and dissipative two-dimensional (2D) turbule...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
The recently derived Lagrangian-averaged Navier-Stokes equations model the large-scale flow of the N...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...