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Computer Research and Modeling, 2019, Volume 11, Issue 6, Pages 1077–1082
DOI: https://doi.org/10.20537/2076-7633-2019-11-6-1077-1082
(Mi crm763)
 

This article is cited in 6 scientific papers (total in 6 papers)

THE 3RD BRICS MATHEMATICS CONFERENCE

Application of mathematical fracture models to simulation of exploration seismology problems by the grid-characteristic method

M. V. Muratov, I. B. Petrov

Moscow Institute of Physics and Technology, 9 Institutskii per., Dolgoprudny, Russia
References:
Abstract: In real problems of exploration seismology we deal with a heterogeneity of the nature of elastic waves interaction with the surface of a fracture by the propagation through it. The fracture is a complex heterogeneous structure. In some locations the surfaces of fractures are placed some distance apart and are separated by filling fluid or emptiness, in some places we can observe the gluing of surfaces, when under the action of pressure forces the fracture surfaces are closely adjoined to each other. In addition, fractures can be classified by the nature of saturation: fluid or gas. Obviously, for such a large variety in the structure of fractures, one cannot use only one model that satisfies all cases.
This article is concerned with description of developed mathematical fracture models which can be used for numerical solution of exploration seismology problems using the grid-characteristic method on unstructured triangular (in 2D-case) and tetrahedral (in 3D-case) meshes. The basis of the developed models is the concept of an infinitely thin fracture, whose aperture does not influence the wave processes in the fracture area. These fractures are represented by bound areas and contact boundaries with different conditions on contact and boundary surfaces. Such an approach significantly reduces the consumption of computer resources since there is no need to define the mesh inside the fracture. On the other side, it allows the fractures to be given discretely in the integration domain, therefore, one can observe qualitatively new effects, such as formation of diffractive waves and multiphase wave front due to multiple reflections between the surfaces of neighbor fractures, which cannot be observed by using effective fracture models actively used in computational seismology.
The computational modeling of seismic waves propagation through layers of mesofractures was produced using developed fracture models. The results were compared with the results of physical modeling in problems in the same statements.
Keywords: grid-characteristic method, exploration seismology problems, mathematical modeling, mathematical models of fractures, mesofractures, physical modeling.
Funding agency Grant number
Russian Science Foundation 19-11-00023
This work was supported by the Russian Science Foundation, project no. 19-11-00023.
Received: 22.05.2019
Accepted: 14.11.2019
Document Type: Article
UDC: 519.63
Language: English
Citation: M. V. Muratov, I. B. Petrov, “Application of mathematical fracture models to simulation of exploration seismology problems by the grid-characteristic method”, Computer Research and Modeling, 11:6 (2019), 1077–1082
Citation in format AMSBIB
\Bibitem{MurPet19}
\by M.~V.~Muratov, I.~B.~Petrov
\paper Application of mathematical fracture models to simulation of exploration seismology problems by the grid-characteristic method
\jour Computer Research and Modeling
\yr 2019
\vol 11
\issue 6
\pages 1077--1082
\mathnet{http://mi.mathnet.ru/crm763}
\crossref{https://doi.org/10.20537/2076-7633-2019-11-6-1077-1082}
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  • https://www.mathnet.ru/eng/crm/v11/i6/p1077
  • This publication is cited in the following 6 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Computer Research and Modeling
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