AbstractWe present a homogenization method for periodic acoustic composites based on the Plane Wave Expansion (PWE) method. We show that the description of periodic acoustic composites needs constitutive parameters which depend on frequency and wavenumber, meaning that the effective material is resonant and nonlocal. Also, an anisotropic mass density and an additional constitutive parameter, called the Willis term in analogy to its counterpart in elasticity, are found. Numerical calculations compare the present method with the traditional multiple scattering method, showing a good agreement between both theories. However, the method presented here overcomes the limitations of the multiple scattering method, where the incorporation of anisot...
Acoustic metamaterials have novel properties in propagating sonic waves for its artificially structu...
This dissertation studies the fundamental behavior associated with a class of nonlinear acoustic met...
This paper presents a general multiscale framework towards the computation of the emer- gent effecti...
AbstractWe present a homogenization method for periodic acoustic composites based on the Plane Wave ...
We present a homogenization method for periodic acoustic composites based on the Plane Wave Expansio...
We present a dynamical homogenization method for acoustic and elastic metamaterials based on periodi...
AbstractAcoustic metamaterials (AMM) are heterogeneous materials with dynamic subwavelength structur...
Homogenization theories provide models that simplify the constitutive description of heterogeneous m...
This contribution presents a novel homogenization technique for modeling heterogeneous materials wit...
Metamaterials extend the realm of materials' properties by carefully designed structural inclusions....
The elastodynamic homogenization theory of heterogeneous materials initiated by J.R. Willis about th...
Metamaterials are composite materials whose dynamic microstructure results in macroscopically observ...
AbstractThis manuscript presents a nonlocal homogenization model for the analysis of wave dispersion...
AbstractWe address an important issue of dynamic homogenisation in vector elasticity for a doubly pe...
Wave propagation in acoustic metamaterials with locally resonant-type microstructures was investigat...
Acoustic metamaterials have novel properties in propagating sonic waves for its artificially structu...
This dissertation studies the fundamental behavior associated with a class of nonlinear acoustic met...
This paper presents a general multiscale framework towards the computation of the emer- gent effecti...
AbstractWe present a homogenization method for periodic acoustic composites based on the Plane Wave ...
We present a homogenization method for periodic acoustic composites based on the Plane Wave Expansio...
We present a dynamical homogenization method for acoustic and elastic metamaterials based on periodi...
AbstractAcoustic metamaterials (AMM) are heterogeneous materials with dynamic subwavelength structur...
Homogenization theories provide models that simplify the constitutive description of heterogeneous m...
This contribution presents a novel homogenization technique for modeling heterogeneous materials wit...
Metamaterials extend the realm of materials' properties by carefully designed structural inclusions....
The elastodynamic homogenization theory of heterogeneous materials initiated by J.R. Willis about th...
Metamaterials are composite materials whose dynamic microstructure results in macroscopically observ...
AbstractThis manuscript presents a nonlocal homogenization model for the analysis of wave dispersion...
AbstractWe address an important issue of dynamic homogenisation in vector elasticity for a doubly pe...
Wave propagation in acoustic metamaterials with locally resonant-type microstructures was investigat...
Acoustic metamaterials have novel properties in propagating sonic waves for its artificially structu...
This dissertation studies the fundamental behavior associated with a class of nonlinear acoustic met...
This paper presents a general multiscale framework towards the computation of the emer- gent effecti...