Simulation of brittle component plastic strains
Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 2 (2013), pp. 52-58
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In this paper we study the nonlocal effects of plastic deformation (shear) flow in the subduction zone of the Kuril-Kamchatka arc based on a statistical model cite APS, constructed according to the catalog of seismic moment tensor cite GCMT for the period 1976 - 2005.
Keywords: statistical methods, spatial and temporal relationships, plastic flow, shear flow, the relative deformation.
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A. V. Popova; O. V. Sheremetyeva. Simulation of brittle component plastic strains. Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 2 (2013), pp. 52-58. http://geodesic.mathdoc.fr/item/VKAM_2013_2_a7/

[1] Aki K., Richards P., Kolichestvennaya seismologiya. Teoriya i metody, v. 1, Mir, M., 1983, 519 pp.

[2] A. N. Antonenko, A. V. Popova, O. V. Sheremeteva, “Osobennosti bluzhdanii v tsepyakh svyazannykh seismicheskikh sobytii”, Vestnik KRAUNTs. Fiz.-mat. nauki, 2013, no. 1(6), 12–22 | MR

[3] E. I. Gordeev, V. E. Levin, V. F. Bakhtiyarov, A. A. Gusev, V. M. Pavlov, V. N. Chebrov, M. Kasakhara, “Predvaritelnyi analiz peremeschenii stantsii GPS na Kamchatke: skorosti plit i geodezicheskii predvestnik zemletryaseniya”, Geodinamika i vulkanizm Kurilo-Kamchatskoi ostrovozduzhnoi sistemy, IVGiG DVO RAN, Petropavlovsk-Kamch., 2001, 82–94

[4] E. A. Kozlovskii (red.), Gornaya entsiklopediya, v. 1, Aa-lava — Geosistema, Sov. entsikl., M., 1984, 560 pp.

[5] A. A. Gusev, V. N. Melnikova, “Svyazi mezhdu magnitudami–srednemirovye i dlya Kamchatki”, Vulkanologiya i seismologiya, 1990, no. 6, 55–62

[6] B. V. Kostrov, Mekhanika ochaga tektonicheskogo zemletryaseniya, Nauka, M., 1975, 173 pp.

[7] L. D. Landau, E. M. Lifshits, Teoreticheskaya fizika, v. 7, Teoriya uprugosti, Nauka, M., 1987, 248 pp. | MR

[8] M. G. Lomize, “Vulkanicheskoe koltso tikhogo okeana”, Sorosovskii obrazovatelnyi zhurnal, 1999, no. 9, 59–66

[9] A. A. Lukk, A. V. Descherevskii, A. Ya. Sidorin, I. A. Sidorin, Variatsii geofizicheskikh polei kak proyavlenie determinirovannogo khaosa vo fraktalnoi srede, OIFZ RAN, M., 1996, 210 pp.

[10] Yu. V. Marapulets, B. M. Shevtsov, I. A. Larionov, M. A. Mischenko, A. O. Scherbina, A. A. Solodchuk, “Otklik geoakusticheskoi emissii na aktivizatsiyu deformatsionnykh protsessov pri podgotovke zemletryasenii”, Tikhookeanskaya geologiya, 31:6 (2012), 59–67

[11] Yu. L. Rebetskii, Tektonicheskie napryazheniya i prochnost prirodnykh gornykh massivov, Akademkniga, M., 2007, 406 pp.

[12] Yu. V. Riznichenko, “O seismotektonicheskom techenii gornykh mass”, Dinamika zemnoi kory, Nauka, M., 1965, 56–63

[13] P. N. Shebalin, “Tsepochki epitsentrov kak indikator vozrastaniya radiusa korrelyatsii seismichnosti pered silnymi zemletryaseniyami”, Vulkanologiya i seismologiya, 2005, no. 1, 3–15 | MR

[14] P. N. Shebalin, “Metodologiya prognoza silnykh zemletryasenii s periodom ozhidaniya menshe goda”, Algoritmy prognoza zemletryasenii, Vychislitelnaya seismologiya, 37, GEOS, M., 2006, 5–180

[15] Shevtsov B.M., Sagitova R.N., “Diffuzionnyi podkhod v statisticheskom analize seismichnosti Kamchatki”, Vulkanologiya i seismologiya, 2012, no. 2, 56–66

[16] Global CMT Web Page, http://www.globalcmt.org/

[17] Y. Kagan, L. Knopoff, “Earthquake risk prediction as a stochastic process”, Phys. Earth Planet. Inter., 14 (1977), 97–108 | DOI

[18] P. N. Shebalin, “Increased correlation range of seismicity before large events manifested by earthquake chains”, Tectonophysics, 424 (2006), 335–349 | DOI

[19] B. M. Shevtsov, R. N. Sagitova, “Statistical analysis of seismic processes on the basis of the deffusion approach”, Doklady Earth Sciences, 426:1 (2009), 642–644 | DOI