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This article is cited in 6 scientific papers (total in 6 papers)
Simulation of seismic processes inside the planet using hybrid grid-characteristic method
V. I. Golubev, I. B. Petrov, N. I. Khokhlov Moscow Institute of Physics and Technology (State University)
Abstract:
The problem of the seismic wave's propagation in the Earth is studied. Authors proposed a method for numerical simulation of dynamic processes based on the solution of govern system of elastic equations with grid-characteristic method on structural curvilinear meshes. A set of calculations with the elastic perturbation (local extension area) in layered two-dimensional Earth model was carried out. Comparison of wave patterns and characteristics of wave responses with analytical solutions and published analogous results was done.
Keywords:
global sesmic activity, computer simulation, grid-characteristic method, planet model.
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English version:
Mathematical Models and Computer Simulations, 2015, 7:5, 439–445
UDC:
519.63:550.34 Received: 15.01.2014
Citation:
V. I. Golubev, I. B. Petrov, N. I. Khokhlov, “Simulation of seismic processes inside the planet using hybrid grid-characteristic method”, Matem. Mod., 27:2 (2015), 139–148; Math. Models Comput. Simul., 7:5 (2015), 439–445
Citation in format AMSBIB
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\pages 139--148
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\crossref{https://doi.org/10.1134/S2070048215050051}
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http://mi.mathnet.ru/eng/mm3577 http://mi.mathnet.ru/eng/mm/v27/i2/p139
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This publication is cited in the following articles:
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V. A. Biryukov, V. A. Miryaha, I. B. Petrov, N. I. Khokhlov, “Simulation of elastic wave propagation in geological media: Intercomparison of three numerical methods”, Comput. Math. Math. Phys., 56:6 (2016), 1086–1095
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A. Favorskaya, I. Petrov, A. Grinevskiy, “Numerical simulation of fracturing in geological medium”, Knowledge-Based and Intelligent Information & Engineering Systems, Procedia Computer Science, 112, eds. C. Zanni-Merk, C. Frydman, C. Toro, Y. Hicks, R. Howlett, L. Jain, Elsevier Science BV, 2017, 1216–1224
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P. Stognii, D. Petrov, N. Khokhlov, A. Favorskaya, “Numerical modeling of influence of ice formations under seismic impacts based on grid-characteristic method”, Knowledge-Based and Intelligent Information & Engineering Systems, Procedia Computer Science, 112, eds. C. Zanni-Merk, C. Frydman, C. Toro, Y. Hicks, R. Howlett, L. Jain, Elsevier Science BV, 2017, 1497–1505
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A. V. Favorskaya, I. B. Petrov, “Grid-characteristic method”, Innovations in Wave Processes Modelling and Decision Making: Grid-Characteristic Method and Applications, Smart Innovation Systems and Technologies, 90, eds. A. Favorskaya, I. Petrov, Springer-Verlag, Berlin, 2018, 117–160
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A. V. Favorskaya, N. I. Khokhlov, V. I. Golubev, A. V. Ekimenko, Yu. V. Pavlovskiy, I. Yu. Khromova, I. B. Petrov, “Wave processes modelling in geophysics”, Innovations in Wave Processes Modelling and Decision Making: Grid-Characteristic Method and Applications, Smart Innovation Systems and Technologies, 90, eds. A. Favorskaya, I. Petrov, Springer-Verlag, Berlin, 2018, 187–218
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V. I. Golubev, O. Ya. Voinov, I. B. Petrov, “Seismic imaging of fractured elastic media on the basis of the grid-characteristic method”, Comput. Math. Math. Phys., 58:8 (2018), 1309–1315
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