The Rayleigh-wave phase velocity of a layered earth model is a function of frequency and four groups of earth parameters: com-pressional (P)-wave velocity, shear (S)-wave velocity, density, and thickness of layers. For the fundamental mode of Rayleigh waves, analysis of the Jacobian matrix for high frequencies (5-40 Hz) provides a measure of dispersion curve sensitivity to earth model parameters. S-wave velocities are the dominant influence of the four earth model parameters. With the lack of sensitivity of the Rayleigh wave to P-wave velocities and densities, estimations of these parameters can be made for a layered earth model such that dispersive data vary predominantly with S-wave velocities (Xia et al., 1999a). This thesis is valid for...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
The shear (S)-wave velocity of near-surface materials (such as soil, rocks, and pavement) and its ef...
The phase velocity of Rayleigh-waves of a layered earth model is a function of frequency and four gr...
It is essential to understand the potential resolving power of surface wave data in interpreting inv...
It is essential to understand the potential resolving power of surface wave data in interpreting inv...
A detailed numerical investigation of surface wave dispersion and particle motion associated with th...
A detailed numerical investigation of surface wave dispersion and particle motion associated with th...
The inversion of dispersive Rayleigh-wave data has been shown to be successful in providing reliable...
The inversion of dispersive Rayleigh-wave data has been shown to be successful in providing reliable...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
Inversion of the fundamental mode of the Rayleigh wave dispersion curve does not provide a unique so...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
The shear (S)-wave velocity of near-surface materials (such as soil, rocks, and pavement) and its ef...
The phase velocity of Rayleigh-waves of a layered earth model is a function of frequency and four gr...
It is essential to understand the potential resolving power of surface wave data in interpreting inv...
It is essential to understand the potential resolving power of surface wave data in interpreting inv...
A detailed numerical investigation of surface wave dispersion and particle motion associated with th...
A detailed numerical investigation of surface wave dispersion and particle motion associated with th...
The inversion of dispersive Rayleigh-wave data has been shown to be successful in providing reliable...
The inversion of dispersive Rayleigh-wave data has been shown to be successful in providing reliable...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
International audienceInversion of the fundamental mode of the Rayleigh wave dispersion curve does n...
Inversion of the fundamental mode of the Rayleigh wave dispersion curve does not provide a unique so...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
In this paper we considered the influences of the changes of the crust and upper mantle earth model ...
The shear (S)-wave velocity of near-surface materials (such as soil, rocks, and pavement) and its ef...