Acoustic materials with non-standard material and geometrical layouts are deployed in buildings to improve sound absorption at targeted frequency bandwidths. Classical numerical models such as the Finite Element Method (FEM) can prove prohibitively expensive as very fine mesh discretizations are required to resolve high frequency waves and complex meso-scale morphologies. Upscaling methodologies like the Coupling Multiscale Finite Element Method (CMsFEM) can be used to achieve accelerated modelling strategies without significantly sacrificing accuracy. Here, complex interfaces and heterogeneous morphologies are resolved at the fine scale. These are mapped onto the coarse scale through a set of numerically evaluated basis functions. The gove...
The use of finite element modeling for porous sound absorbing materials is often limited by the nume...
Le bruit est aujourd’hui omniprésent dans notre société, ce qui incite à en diminuer les impacts sur...
We develop a novel Virtual Element Method (VEM) to resolve the mixed Biot displacement-pressure form...
We introduce a novel heterogeneous multi-scale method for the frequency response analysis of waves p...
Driven by economic, environmental and ergonomic concerns, porous composites are increasingly being a...
We consider acoustic waves in fluid-saturated periodic media with large contrasts in the permeabilit...
International audienceIn this paper, the acoustic field with the presence of poro-elastic materials ...
International audienceIn this work, a solution strategy is investigated for the resolution of multi-...
Porous materials are often used in the context of passive noise control applications due to their lo...
Analyses involving structural-acoustic finite element models including three-dimensional modelling o...
Copyright 2013 Acoustical Society of America. This article may be downloaded for personal use only. ...
Institute of Acoustics, Chinese Academy of Sciences, Beijing, China, August 27, 2012With microstruct...
This thesis concerns three-dimensional finite element modelling of Biot's equations for elasto-acous...
Currently, the finite element method (FEM) is most commonly used to predict the harmonic behaviour o...
In this paper, a model for sound propagation in double porosity materials with elastic frame is prop...
The use of finite element modeling for porous sound absorbing materials is often limited by the nume...
Le bruit est aujourd’hui omniprésent dans notre société, ce qui incite à en diminuer les impacts sur...
We develop a novel Virtual Element Method (VEM) to resolve the mixed Biot displacement-pressure form...
We introduce a novel heterogeneous multi-scale method for the frequency response analysis of waves p...
Driven by economic, environmental and ergonomic concerns, porous composites are increasingly being a...
We consider acoustic waves in fluid-saturated periodic media with large contrasts in the permeabilit...
International audienceIn this paper, the acoustic field with the presence of poro-elastic materials ...
International audienceIn this work, a solution strategy is investigated for the resolution of multi-...
Porous materials are often used in the context of passive noise control applications due to their lo...
Analyses involving structural-acoustic finite element models including three-dimensional modelling o...
Copyright 2013 Acoustical Society of America. This article may be downloaded for personal use only. ...
Institute of Acoustics, Chinese Academy of Sciences, Beijing, China, August 27, 2012With microstruct...
This thesis concerns three-dimensional finite element modelling of Biot's equations for elasto-acous...
Currently, the finite element method (FEM) is most commonly used to predict the harmonic behaviour o...
In this paper, a model for sound propagation in double porosity materials with elastic frame is prop...
The use of finite element modeling for porous sound absorbing materials is often limited by the nume...
Le bruit est aujourd’hui omniprésent dans notre société, ce qui incite à en diminuer les impacts sur...
We develop a novel Virtual Element Method (VEM) to resolve the mixed Biot displacement-pressure form...