International audienceWavelet analysis and compression tools are reviewed and different applications to study MHD and plasma turbulence are presented. We introduce the continuous and the orthogonal wavelet transform and detail several statistical diagnostics based on the wavelet coefficients. We then show how to extract coherent structures out of fully developed turbulent flows using wavelet-based denoising. Finally some multiscale numerical simulation schemes using wavelets are described. Several examples for analyzing, compressing and computing one, two and three dimensional turbulent MHD or plasma flows are presented
We study compressible magnetohydrodynamic turbulence, which holds the key to many astrophysical proc...
Awaiting return of copyright permission formTraditionally, Fourier transforms have been used to elic...
A simulation method to track the time evolution of coherent vorticity and current density, called co...
International audienceWavelet analysis and compression tools are reviewed and different applications...
A general description of continuous vs discrete wavelet transform is given emphasizing their use in ...
We have used wavelets and wavelet packets to analyse, model and compute turbulent flows. The theory ...
International audienceRecent simulations have demonstrated that coherent current sheets dominate the...
A new method to extract coherent bursts from turbulent signals is presented. It uses the wavelet rep...
This article presents the continuous wavelet transform and its property. It is applied to: analyze t...
Abstract. Multiresolution methods, such as the wavelet decompositions, are increasingly used in phys...
International audienceThis article reviews state-of-the-art adaptive, multiresolution wavelet method...
Highly magnetized pure electron plasmas confined in Penning-Malmberg traps allow to perform accurate...
The continuous wavelet (Morlet) transform is modified by adding a Gaussian window to the Fourier spe...
Computer simulation is an essential part of the design and development of jet engines for the aeropr...
The authors examined three specific methods for using the wavelet transform to derive information on...
We study compressible magnetohydrodynamic turbulence, which holds the key to many astrophysical proc...
Awaiting return of copyright permission formTraditionally, Fourier transforms have been used to elic...
A simulation method to track the time evolution of coherent vorticity and current density, called co...
International audienceWavelet analysis and compression tools are reviewed and different applications...
A general description of continuous vs discrete wavelet transform is given emphasizing their use in ...
We have used wavelets and wavelet packets to analyse, model and compute turbulent flows. The theory ...
International audienceRecent simulations have demonstrated that coherent current sheets dominate the...
A new method to extract coherent bursts from turbulent signals is presented. It uses the wavelet rep...
This article presents the continuous wavelet transform and its property. It is applied to: analyze t...
Abstract. Multiresolution methods, such as the wavelet decompositions, are increasingly used in phys...
International audienceThis article reviews state-of-the-art adaptive, multiresolution wavelet method...
Highly magnetized pure electron plasmas confined in Penning-Malmberg traps allow to perform accurate...
The continuous wavelet (Morlet) transform is modified by adding a Gaussian window to the Fourier spe...
Computer simulation is an essential part of the design and development of jet engines for the aeropr...
The authors examined three specific methods for using the wavelet transform to derive information on...
We study compressible magnetohydrodynamic turbulence, which holds the key to many astrophysical proc...
Awaiting return of copyright permission formTraditionally, Fourier transforms have been used to elic...
A simulation method to track the time evolution of coherent vorticity and current density, called co...