Abstract. Dispersion properties of Rayleigh-type surface waves are widely used in environmen-tal and engineering geophysics to image and characterize a shallow subsurface. In this paper, we numerically study the Rayleigh-type surface waves and their properties in 2D viscoelastic media. A finite difference method in a time-space domain is proposed, with an unsplit convolutional perfectly matched layer (C-PML) absorbing boundary condition. For two models that have ana-lytical expressions of wave fields/dispersion curves, we calculate their wave fields and compare the analytical and numerical solutions to demonstrate the validity of this method. For the case where a medium has a high Poisson’s ratio, say 0.49, traditional finite difference met...
Real earth media disperse and attenuate propagating mechanical waves. This anelastic behavior can be...
A study is made of the propagation of Rayleigh waves in a thinly layered laminated thermoelastic med...
Real earth media disperse and attenuate propagating waves. This anelastic behavior can be well descr...
In this paper we consider the propagation of Rayleigh surface waves in an exponentially graded half-...
The Rayleigh wave propagation problem in the elastic halfspace — vis-coelastic layer interface was a...
The Rayleigh wave propagation problem in the elastic halfspace - viscoelastic layer interface was an...
In this paper, the propagation characteristic of Rayleigh waves in transversely isotropic fluid-satu...
The dispersion of interface waves is studied theoretically in a model consisting of a liquid layer o...
Real Earth media are not perfectly elastic. Instead, they attenuate propagating mechanical waves. Th...
Real sedimentary media can usually be characterized as transverse isotropy. To reveal wave propagati...
The present paper gives explicit solutions for surface waves propagation in a homogeneous half space...
Assuming the hypothesis of local thermal non-equilibrium, this work investigates the propagation of ...
A finite volume method based solver for Rayleigh waves in two dimensional elastic materials is const...
The problem of Rayleigh waves in a semi-infinite saturated soil medium is reconsidered in this study...
A matrix formulation is used to derive integral expressions for the time transformed displacement fi...
Real earth media disperse and attenuate propagating mechanical waves. This anelastic behavior can be...
A study is made of the propagation of Rayleigh waves in a thinly layered laminated thermoelastic med...
Real earth media disperse and attenuate propagating waves. This anelastic behavior can be well descr...
In this paper we consider the propagation of Rayleigh surface waves in an exponentially graded half-...
The Rayleigh wave propagation problem in the elastic halfspace — vis-coelastic layer interface was a...
The Rayleigh wave propagation problem in the elastic halfspace - viscoelastic layer interface was an...
In this paper, the propagation characteristic of Rayleigh waves in transversely isotropic fluid-satu...
The dispersion of interface waves is studied theoretically in a model consisting of a liquid layer o...
Real Earth media are not perfectly elastic. Instead, they attenuate propagating mechanical waves. Th...
Real sedimentary media can usually be characterized as transverse isotropy. To reveal wave propagati...
The present paper gives explicit solutions for surface waves propagation in a homogeneous half space...
Assuming the hypothesis of local thermal non-equilibrium, this work investigates the propagation of ...
A finite volume method based solver for Rayleigh waves in two dimensional elastic materials is const...
The problem of Rayleigh waves in a semi-infinite saturated soil medium is reconsidered in this study...
A matrix formulation is used to derive integral expressions for the time transformed displacement fi...
Real earth media disperse and attenuate propagating mechanical waves. This anelastic behavior can be...
A study is made of the propagation of Rayleigh waves in a thinly layered laminated thermoelastic med...
Real earth media disperse and attenuate propagating waves. This anelastic behavior can be well descr...