An important dispersion-related characteristic of wave propagation through periodic materials is the existence of frequency bands. A medium effectively attenuates all incident waves within stopbands and allows propagation within passbands. The widths and locations of these bands in the frequency domain depend on the layout of contrasting materials and the ratio of their properties. Using a multiobjective genetic algorithm, the topologies of one-dimensional periodic unit cells are designed for target frequency band structures characterizing longitudinal wave motion. The decision variables are the number of layers in the unit cell and the thickness of each layer. Binary and mixed formulations are developed for the treatment of the optimizatio...
A methodology to obtain wideband scattering diffusion based on periodic artificial surfaces is prese...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
Multiobjective evolutionary optimization of periodic layered materials for desired wave dispersion c...
ABSTRACT The spatial distribution of material phases within a periodic composite can be engineered t...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
Periodic structures act as mechanical filters for elastic wave propagation, therefore they can be us...
Within periodically heterogeneous structures, wave scattering and dispersion occur across constituen...
In phononic quasi one-dimensional structures, there is a phenomenon of a phononic bandgap (PhBG), wh...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
This paper presents a second order optimization method based on the WFEM framework that enables the ...
In the work, multi-criteria optimization of phononic structures was performed to minimize the transm...
Broadband sound attenuation at low frequency ranges (below 500 Hz) has been a challenge in the acous...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
A methodology to obtain wideband scattering diffusion based on periodic artificial surfaces is prese...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
Multiobjective evolutionary optimization of periodic layered materials for desired wave dispersion c...
ABSTRACT The spatial distribution of material phases within a periodic composite can be engineered t...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
AbstractThis paper describes the use of genetic algorithms (GAs) for the optimal design of phononic ...
Periodic structures act as mechanical filters for elastic wave propagation, therefore they can be us...
Within periodically heterogeneous structures, wave scattering and dispersion occur across constituen...
In phononic quasi one-dimensional structures, there is a phenomenon of a phononic bandgap (PhBG), wh...
In this paper we employ genetic algorithms in order to theoretically design a range of phononic medi...
This paper presents a second order optimization method based on the WFEM framework that enables the ...
In the work, multi-criteria optimization of phononic structures was performed to minimize the transm...
Broadband sound attenuation at low frequency ranges (below 500 Hz) has been a challenge in the acous...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
A methodology to obtain wideband scattering diffusion based on periodic artificial surfaces is prese...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...