Seabed shear modulus profile inversion using surface gravity (water) wave‐induced bottom motion

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Abstract

Summary. The motion of a layered seabed induced by propagating gravity water waves is modelled by the coupling matrix for a massless incompressible elastic bed according to Yamamoto. An amplitude inversion scheme is developed to extract the bottom shear modulus profile from the motion of the seabed at a point on the bed surface using the linear inverse theory combined with the Yamamoto theory of wave‐seabed interaction. Numerical tests using synthetic data without noise confirmed that the inversion is unique and consistent. The inversion technique is applied to a set of field data from the Mississippi River Delta. A good agreement is obtained between the inverted profile and the direct measurements. Copyright © 1986, Wiley Blackwell. All rights reserved

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Yamamoto, T., & Torii, T. (1986). Seabed shear modulus profile inversion using surface gravity (water) wave‐induced bottom motion. Geophysical Journal of the Royal Astronomical Society, 85(2), 413–431. https://doi.org/10.1111/j.1365-246X.1986.tb04521.x

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