B.H.B. is supported by the Natural Environment Research Council grant NE/M014983/1.We propose a new similarity theory for the two-dimensional inverse energy cascade and the coherent vortex population it contains when forced at intermediate scales. Similarity arguments taking into account enstrophy conservation and a prescribed constant energy injection rate such that E∼t yield three length scales, lω, lE and lψ, associated with the vorticity field, energy peak and streamfunction, and predictions for their temporal evolutions, t1/2, t and t3/2, respectively. We thus predict that vortex areas grow linearly in time, A∼l2ω∼t, while the spectral peak wavenumber kE ≡ 2πl−1E ∼ t−1. We construct a theoretical framework involving a three-part, time-...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
We propose a new similarity theory for the two-dimensional inverse energy cascade and the coherent v...
We propose a new similarity theory for the two-dimensional inverse energy cascade and the coherent v...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
We study how the properties of forcing and dissipation affect the scaling behaviour of the vortex po...
We study how the properties of forcing and dissipation affect the scaling behaviour of the vortex po...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
A new numerical technique for the simulation of forced two-dimensional turbulence (Dritschel and Fon...
We investigate numerically the validity of Kraichnan-Batchelor scalings for forced 2D turbulence. We...
Jérôme Fontane is supported by the European Community in the framework of the CONVECT project under ...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...
We propose a new similarity theory for the two-dimensional inverse energy cascade and the coherent v...
We propose a new similarity theory for the two-dimensional inverse energy cascade and the coherent v...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
We study how the properties of forcing and dissipation affect the scaling behaviour of the vortex po...
We study how the properties of forcing and dissipation affect the scaling behaviour of the vortex po...
We survey the role of coherent vortices in two-dimensional turbulence, including formation mechanism...
A new numerical technique for the simulation of forced two-dimensional turbulence (Dritschel and Fon...
We investigate numerically the validity of Kraichnan-Batchelor scalings for forced 2D turbulence. We...
Jérôme Fontane is supported by the European Community in the framework of the CONVECT project under ...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
An inverse cascade{energy transfer to progressively larger scales{is a salient feature of two-dimens...
A new numerical technique for the simulation of forced two-dimensional turbulence[D. Dritschel and J...