Simulation of dynamic processes in three-dimensional layered fractured media with the use of the grid-characteristic numerical method

Author:

Golubev V. I.,Gilyazutdinov R. I.,Petrov I. B.,Khokhlov N. I.,Vasyukov A. V.

Publisher

Pleiades Publishing Ltd

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference20 articles.

1. J. Virieux, H. Calandra, and R. É. Plessix, “A Review of the Spectral, Pseudo-Spectral, Finite-Difference and Finite-Element Modelling Techniques for Geophysical Imaging,” Geophys. Prospect. 59 (5), 794–813 (2011).

2. J. M. Carcione, C. Herman Gérard, and P. E. Kroode, “Y2K Review Article: Seismic Modeling,” Rev. Lit. Arts Amer. 67 (4), 1304–1325 (2002).

3. I. E. Kvasov, V. B. Levyant, and I. B. Petrov, Solving Direct Seismic Tasks in Fractured Media by the Grid- Characteristic Simulation Method (in Order to Study the Possibility of Direct Detection of Fractured Regions) (European Association of Geoscientists & Enginners, Moscow, 2016) [in Russian].

4. V. Lisitsa, V. Tcheverda, and C. Botter, “Combination of the Discontinuous Galerkin Method with Finite Differences for Simulation of Seismic Wave Propagation,” J. Comput. Phys. 311, 142–157 (2016).

5. J. Massau, Memoire sur L’integration Graphique des Équations aux Derivéss Partielles (F. Meyer-van Loo, Ghent, 1899).

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