POST-SEISMIC RELAXATION THEORY ON A LATERALLY HETEROGENEOUS VISCOELASTIC MODEL

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dc.contributor.author Pollitz F.F.
dc.date.accessioned 2022-01-30T04:41:23Z
dc.date.available 2022-01-30T04:41:23Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=5167515
dc.identifier.citation Geophysical Journal International, 2003, 155, 1, 57-78
dc.identifier.issn 0956-540X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/34712
dc.description.abstract Investigation was carried out into the problem of relaxation of a laterally heterogeneous viscoelastic Earth following an impulsive moment release event. The formal solution utilizes a semi-analytic solution for post-seismic deformation on a laterally homogeneous Earth constructed from viscoelastic normal modes, followed by application of mode coupling theory to derive the response on the aspherical Earth. The solution is constructed in the Laplace transform domain using the correspondence principle and is valid for any linear constitutive relationship between stress and strain. The specific implementation described in this paper is a semi-analytic discretization method which assumes isotropic elastic structure and a Maxwell constitutive relation. It accounts for viscoelastic-gravitational coupling under lateral variations in elastic parameters and viscosity. For a given viscoelastic structure and minimum wavelength scale, the computational effort involved with the numerical algorithm is proportional to the volume of the laterally heterogeneous region. Examples are presented of the calculation of post-seismic relaxation with a shallow, laterally heterogeneous volume following synthetic impulsive seismic events, and they illustrate the potentially large effect of regional 3-D heterogeneities on regional deformation patterns.
dc.subject NORMAL MODES
dc.subject POSTSEISMIC RELAXATION
dc.subject VISCOELASTICITY
dc.title POST-SEISMIC RELAXATION THEORY ON A LATERALLY HETEROGENEOUS VISCOELASTIC MODEL
dc.type Статья


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