DYNAMIC NON-PLANAR CRACK RUPTURE BY A FINITE VOLUME METHOD

dc.contributor.authorBenjemaa M.
dc.contributor.authorGlinsky-Olivier N.
dc.contributor.authorPiperno S.
dc.contributor.authorCruz-Atienza V.M.
dc.contributor.authorVirieux J.
dc.date.accessioned2026-08-02T01:30:59Z
dc.date.issued2007
dc.description.abstractModelling dynamic rupture for complex geometrical fault structures is performed through a finite volume method. After transformations for building up the partial differential system following explicit conservative law, we design an unstructured bi-dimensional time-domain numerical formulation of the crack problem. As a result, arbitrary non-planar faults can be explicitly represented without extra computational cost. On these complex surfaces, boundary conditions are set on stress fluxes and not on stress values. Prescribed rupture velocity gives accurate solutions with respect to analytical ones depending on the mesh refinement, while solutions for spontaneous propagation are analysed through numerical means. An example of non-planar spontaneous fault growth in heterogeneous media demonstrates the good behaviour of the proposed algorithm as well as specific difficulties of such numerical modelling.
dc.identifierhttps://elibrary.ru/item.asp?id=31367846
dc.identifier.citationGeophysical Journal International, 2007, 171, 1, 271-285
dc.identifier.doi10.1111/j.1365-246X.2006.03500.x
dc.identifier.issn0956-540X
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/53837
dc.subjectBOUNDARY CONDITIONS
dc.subjectDEISMIC SOURCE
dc.subjectDYNAMIC RUPTURE
dc.subjectFINITE VOLUME APPROACH
dc.subjectFRICTION LAW
dc.subjectNUMERICAL METHODS
dc.titleDYNAMIC NON-PLANAR CRACK RUPTURE BY A FINITE VOLUME METHOD
dc.typeСтатья

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