Seismic inversion of soil damping and stiffness using multichannel analysis of surface wave measurements in the marine environment

Author:

Armstrong M A1,Ravasio M1,Versteijlen W G1,Verschuur D J2,Metrikine A V3,van Dalen K N3

Affiliation:

1. Siemens Gamesa Renewable Energy B. V., Beatrixlaan 800, 2595 BN Den Haag, the Netherlands

2. Faculty of Civil Engineering and Geosciences, Delft University of Technology, Stevinweg 1, 2628CN Delft, the Netherlands

3. Faculty of Applied Sciences - Imaging Physics, Delft University of Technology, Lorentzweg 1, 2628CJ Delft, the Netherlands

Abstract

SUMMARY Determination of soil material damping is known to be difficult and uncertain, especially in the offshore environment. Using an advanced inversion methodology based on multichannel spectral analysis, Scholte and Love wave measurements are used to characterize subsea soil from a North Sea site. After normalization, a determinant-based objective function is used in a genetic algorithm optimization to estimate the soil shear modulus. The inverted shear-modulus profile is comparable to previously published results for the same data, although a higher degree of certainty is achieved in the near-surface layers. The half-power bandwidth method is used for extracting the attenuation curve from the measurements and efficient reference data points are chosen based on wavelet compression. The material-damping ratio inversion is performed using a modified stochastic optimization algorithm. Accounting for measurement errors, the material-damping ratio profile is retrieved from the fundamental-mode Scholte wave with a high degree of certainty. Furthermore, a method is proposed for identifying the frequency dependence of the material-damping ratio from in situ measurements. No evidence for frequency dependence is found and the small-strain soil material-damping ratio at this site can be said to be frequency independent for the measured conditions.

Funder

Rijksdienst voor Ondernemend Nederland

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

Reference35 articles.

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4. Surface wave retrieval in layered media using seismic interferometry by multidimensional deconvolution;van Dalen;Geophys. J. Int.,2014

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