We present a numerical method to determine the complex acoustic impedance at the open surface of an arbitrarily shaped cavity, associated to an impinging planar acoustic wave with a given wavenumber vector and frequency. We have achieved this by developing the first inverse Helmholtz Solver (iHS), which implicitly reconstructs the complex acoustic waveform - at a given frequency - up to the unknown impedance boundary, hereby providing the spatial distribution of impedance as a result of the calculation for that given frequency. We show that the algebraic closure conditions required by the inverse Helmholtz Problem are physically related to the assignment of the spatial distribution of the pressure phase over the unknown impedance boundary....
Abstract Background The acoustic damping in gas turbines and aero-engines relies to a great extent o...
This paper demonstrates that various sound-absorbing/reflective materials or structures can be effec...
The application of wall acoustic lining is a major factor in the reduction of aircraft engine noise....
The current study introduces a novel methodology to determine the spatial distribution of the comple...
Axisymmetric numerical simulations of a spatially developing hypersonic boundary layer over a sharp ...
The paper addresses the experimental and numerical acoustic characterization of ultrasonically absor...
We have carried out axisymmetric numerical simulations of a spatially developing hypersonic boundary...
An impedance problem is fundamental to computing acoustic wave propagation. Here, the focus is on ap...
© 2016 by the authors. The present work proposes and assesses a methodology based on incompressible ...
The present study investigates the physics of Helmholtz resonators under a large range of excitation...
The present study investigates the physics of Helmholtz resonators under a large range of excitation...
Background The acoustic damping in gas turbines and aero-engines relies to a great extent on acoust...
Background The acoustic damping in gas turbines and aero-engines relies to a great extent on acoust...
International audienceA methodology to design broadband time-domain impedance boundary conditions (T...
The paper addresses the experimental and numerical acoustic characterization of ultrasonically absor...
Abstract Background The acoustic damping in gas turbines and aero-engines relies to a great extent o...
This paper demonstrates that various sound-absorbing/reflective materials or structures can be effec...
The application of wall acoustic lining is a major factor in the reduction of aircraft engine noise....
The current study introduces a novel methodology to determine the spatial distribution of the comple...
Axisymmetric numerical simulations of a spatially developing hypersonic boundary layer over a sharp ...
The paper addresses the experimental and numerical acoustic characterization of ultrasonically absor...
We have carried out axisymmetric numerical simulations of a spatially developing hypersonic boundary...
An impedance problem is fundamental to computing acoustic wave propagation. Here, the focus is on ap...
© 2016 by the authors. The present work proposes and assesses a methodology based on incompressible ...
The present study investigates the physics of Helmholtz resonators under a large range of excitation...
The present study investigates the physics of Helmholtz resonators under a large range of excitation...
Background The acoustic damping in gas turbines and aero-engines relies to a great extent on acoust...
Background The acoustic damping in gas turbines and aero-engines relies to a great extent on acoust...
International audienceA methodology to design broadband time-domain impedance boundary conditions (T...
The paper addresses the experimental and numerical acoustic characterization of ultrasonically absor...
Abstract Background The acoustic damping in gas turbines and aero-engines relies to a great extent o...
This paper demonstrates that various sound-absorbing/reflective materials or structures can be effec...
The application of wall acoustic lining is a major factor in the reduction of aircraft engine noise....