Seismic reflection data contain surface waves that can be processed and interpreted to supply shear-wave velocity models along seismic reflection lines. The coverage of seismic reflection data allows the use of automated multifold processing to extract high-quality dispersion curves and experimental uncertainties in amoving spatial window. The dispersion curves are then inverted using a deterministic, laterally constrained inversion to obtain a pseudo-2D model of the shear-wave velocity. A Monte Carlo global search inversion algorithm optimizes the parameterization. When the strategy is used with synthetic and field data, consistent final models ith smooth lateral variations are successfully retrieved. This method constitutes an improvemen...
Practical applications of surface wave inversion demand reliable inverted shear-wave profiles and a ...
Geophysical methods are broadly used to map the subsurface. Their ability to investigate large areas...
The inversion of surface-wave dispersion curve to derive shear-wave velocity profile is a very delic...
Seismic reflection data contain surface waves that can be processed and interpreted to supply shear-...
A new strategy for processing and inverting surface waves retrieved by seismic reflection ground rol...
The task of this work is the evaluation of the possibility to identify lateral variation through Sur...
We present a 1D laterally constrained inversion of surface wave dispersion curves based on the minim...
Methods based on the seismic P-wave, seismic surface wave, and apparent resistivity are commonly use...
Surface wave analysis is usually applied as a 1D tool to estimate VS profiles. Here we evaluate the ...
A case history is reported to outline a possible strategy for the construction of a pseudo-2D model ...
The analysis of surface wave dispersion curves is a way to infer the vertical distribution of shear-...
Surfacewave methods consist of the extraction and inversion of the Rayleigh wave phase-velocity disp...
Ground roll and mud roll in seismic reflection data can be analysed to infer a near surface S-wave v...
Surface wave methods consist of the extraction and inversion of the Rayleigh wave phase-velocity dis...
Rayleigh wave or ground roll is a noise in seismic body waves. However, how to use this noise for so...
Practical applications of surface wave inversion demand reliable inverted shear-wave profiles and a ...
Geophysical methods are broadly used to map the subsurface. Their ability to investigate large areas...
The inversion of surface-wave dispersion curve to derive shear-wave velocity profile is a very delic...
Seismic reflection data contain surface waves that can be processed and interpreted to supply shear-...
A new strategy for processing and inverting surface waves retrieved by seismic reflection ground rol...
The task of this work is the evaluation of the possibility to identify lateral variation through Sur...
We present a 1D laterally constrained inversion of surface wave dispersion curves based on the minim...
Methods based on the seismic P-wave, seismic surface wave, and apparent resistivity are commonly use...
Surface wave analysis is usually applied as a 1D tool to estimate VS profiles. Here we evaluate the ...
A case history is reported to outline a possible strategy for the construction of a pseudo-2D model ...
The analysis of surface wave dispersion curves is a way to infer the vertical distribution of shear-...
Surfacewave methods consist of the extraction and inversion of the Rayleigh wave phase-velocity disp...
Ground roll and mud roll in seismic reflection data can be analysed to infer a near surface S-wave v...
Surface wave methods consist of the extraction and inversion of the Rayleigh wave phase-velocity dis...
Rayleigh wave or ground roll is a noise in seismic body waves. However, how to use this noise for so...
Practical applications of surface wave inversion demand reliable inverted shear-wave profiles and a ...
Geophysical methods are broadly used to map the subsurface. Their ability to investigate large areas...
The inversion of surface-wave dispersion curve to derive shear-wave velocity profile is a very delic...