In this work, we experimentally and numerically investigate the propagation and attenuation of vertically polarized surface waves in an unconsolidated granular medium equipped with small-scale metabarriers of different depths, i.e., arrays composed of one, two, and three embedded layers of sub-wavelength resonators. Our findings reveal how such a multi-layer arrangement strongly affects the attenuation of the surface wave motion within and after the barrier. When the surface waves collide with the barriers, the wavefront is back-scattered and steered downward underneath the oscillators. Due to the stiffness gradient of the granular medium, part of the wavefield is then rerouted to the surface level after overcoming the resonant array. ...
We explore the thesis that tall structures can be protected by means of seismic metamaterials. Seism...
Elastic metasurfaces are thin interfaces composed of locally resonant structures placed at the free ...
Granular materials can be used in laboratory-scale physical models to simulate and study seismic wav...
In this work, we experimentally and numerically investigate the propagation and attenuation of verti...
The present thesis describes a small-scale experiment, carried out in the laboratory of the Swiss Fe...
Arrays of surface resonators forming so-called metabarriers are capable of converting seismic Raylei...
Arrays of mechanical resonators, referred to as metasurfaces, have proven capable of controlling in-...
Elastic metasurfaces composed of arrays of subwavelength mechanical oscillators located at the free ...
In this paper, the physics of horizontally polarized shear waves traveling across a locally resonant...
Since their emergence, locally resonant metamaterials have found several applications for the contro...
We investigate the interaction of guided surface acoustic modes (GSAMs) in unconsolidated granular m...
The design of metamaterials for surface waves control is an emerging field of research which can imp...
none3noArtificial soils engineered with periodic or resonant structures, also referred as “seismic m...
Resonant metamaterials have been proposed to reflect or redirect elastic waves at different length s...
We explore the thesis that tall structures can be protected by means of seismic metamaterials. Seism...
Elastic metasurfaces are thin interfaces composed of locally resonant structures placed at the free ...
Granular materials can be used in laboratory-scale physical models to simulate and study seismic wav...
In this work, we experimentally and numerically investigate the propagation and attenuation of verti...
The present thesis describes a small-scale experiment, carried out in the laboratory of the Swiss Fe...
Arrays of surface resonators forming so-called metabarriers are capable of converting seismic Raylei...
Arrays of mechanical resonators, referred to as metasurfaces, have proven capable of controlling in-...
Elastic metasurfaces composed of arrays of subwavelength mechanical oscillators located at the free ...
In this paper, the physics of horizontally polarized shear waves traveling across a locally resonant...
Since their emergence, locally resonant metamaterials have found several applications for the contro...
We investigate the interaction of guided surface acoustic modes (GSAMs) in unconsolidated granular m...
The design of metamaterials for surface waves control is an emerging field of research which can imp...
none3noArtificial soils engineered with periodic or resonant structures, also referred as “seismic m...
Resonant metamaterials have been proposed to reflect or redirect elastic waves at different length s...
We explore the thesis that tall structures can be protected by means of seismic metamaterials. Seism...
Elastic metasurfaces are thin interfaces composed of locally resonant structures placed at the free ...
Granular materials can be used in laboratory-scale physical models to simulate and study seismic wav...