International audienceEmpirical Mode Decomposition (EMD) is a powerful "timefrequency" tool that is used here in the spatial domain to filter out at each instant, short scale wall pressure fluctuations measured by a linear microphone array beneath a boundary layer. A frequency over streamwise wavenumber representation is used to separate acoustic and turbulent energy: it is obtained by a classical spatial-correlogram which is performed either on original signals or on spatial EMD-filtered signals. It is shown how spatial EMD filtering reduces the spread of the convective energy due to the truncation effects and is tuned to improve the separation of the acoustical energy out of the turbulent energy
Abstract—Empirical Mode decomposition (EMD) is a math-ematical tool designed to analyze non-stationa...
Direct numerical simulations (DNS) of turbulent channel flows up to Re-tau approximate to 1000 are c...
This paper proposes two different noise cancelation techniques for cleaning wallpressure fluctuation...
This study aims at the development of techniques of separation of the acoustic and aerodynamic contr...
International audienceEmpirical mode decomposition (EMD) is a method that relevant to decompose nonl...
International audienceThe wave-number-frequency spectra of a pressure field beneath a turbulent boun...
Over the last decade, Empirical Mode Decomposition (EMD) has developed into a versatile tool for ada...
International audienceWall pressure fluctuations beneath a turbulent boundary layer in the presence ...
This paper introduces a new signal denoising based on the Empirical mode decomposition (EMD) framewo...
Huang’s Empirical Mode Decomposition (EMD) is an algorithm for analyzing nonsta-tionary data that pr...
Empirical mode decomposition (EMD) is a tool developed for analyzing nonlinear and non stationary si...
The Empirical Mode Decomposition (EMD) is a signal analysis method that separates multi-component si...
Huang's data-driven technique of empirical mode decomposition (EMD) is given a lter bank interp...
The prediction of the vibratory response of structures excited by turbulent flows im-plies a good kn...
International audienceMultivariate empirical mode decomposition (MEMD) has been introduced to make s...
Abstract—Empirical Mode decomposition (EMD) is a math-ematical tool designed to analyze non-stationa...
Direct numerical simulations (DNS) of turbulent channel flows up to Re-tau approximate to 1000 are c...
This paper proposes two different noise cancelation techniques for cleaning wallpressure fluctuation...
This study aims at the development of techniques of separation of the acoustic and aerodynamic contr...
International audienceEmpirical mode decomposition (EMD) is a method that relevant to decompose nonl...
International audienceThe wave-number-frequency spectra of a pressure field beneath a turbulent boun...
Over the last decade, Empirical Mode Decomposition (EMD) has developed into a versatile tool for ada...
International audienceWall pressure fluctuations beneath a turbulent boundary layer in the presence ...
This paper introduces a new signal denoising based on the Empirical mode decomposition (EMD) framewo...
Huang’s Empirical Mode Decomposition (EMD) is an algorithm for analyzing nonsta-tionary data that pr...
Empirical mode decomposition (EMD) is a tool developed for analyzing nonlinear and non stationary si...
The Empirical Mode Decomposition (EMD) is a signal analysis method that separates multi-component si...
Huang's data-driven technique of empirical mode decomposition (EMD) is given a lter bank interp...
The prediction of the vibratory response of structures excited by turbulent flows im-plies a good kn...
International audienceMultivariate empirical mode decomposition (MEMD) has been introduced to make s...
Abstract—Empirical Mode decomposition (EMD) is a math-ematical tool designed to analyze non-stationa...
Direct numerical simulations (DNS) of turbulent channel flows up to Re-tau approximate to 1000 are c...
This paper proposes two different noise cancelation techniques for cleaning wallpressure fluctuation...