Recognition of earthquake-prone areas: Methodology and analysis of the results

A. Soloviev1, А. Д. Гвишиани2, A. I. Gorshkov1, M. N. Dobrovolsky2, О. В. Новикова1
1Institute of Earthquake Prediction Theory and Mathematical Geophysics, Russian Academy of Sciences, Moscow, Russia
2Geophysical Center of the Russian Academy of Sciences, Moscow, Russia

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Agayan, S.M., Bogoutdinov, Sh.R., and Dobrovolsky, M.N., On one algorithm for searching dense areas and its geophysical applications, Matematicheskie metody raspoznavaniya obrazov. 15-ya Vserossiiskaya konferentsiya, Petrozavodsk, 2011. Sbornik dokladov (Proc. 15th All-Russian Conference on Mathematical Methods on Pattern Recognition, Petrozavodsk, 2011) Moscow, 2011, pp. 543–546.

Alekseevskaya, M.A., Gabrielov, A.M., Gvishiani, A.D., Gelfand, I.M., and Ranzman, E.Ya., Formal morphostructural zoning of mountain territories, J. Geophys., 1977a, vol. 43, pp. 227–233.

Alekseevskaya, M.A., Gabrielov, A.M., Gvishiani, A.D., Gelfand, I.M., and Ranzman, E.Ya., Morphostructural zoning of mountain regions by formal criteria, in Vychislitel’naya seismologiya, Vyp. 10: Raspoznavanie i spektral’nyi analiz v seismologii (Compuitational Seismology, Vol. 10: Pattern Recognition and Spectral Analysis in Seismology), Keilis-Borok, V.I., Ed., Moscow, 1977b, pp. 33–49.

Bhatia, S.C., Chetty, T.R.K., Filimonov, M., Gorshkov, A., Ranzman, E., and Rao, M.N., Identification of potential areas for the occurrence of strong earthquakes in Himalayan Arc region, Proc. Indian Acad. Sci. (Earth Planet. Sci.), 1992a, vol. 101, no. 4, pp. 369–385.

Bhatia, S.S., Gorshkov, A.I., Ranzman, E.Ya., Rao, M.N., Filimonov, M.B., and Chetti, T.R.K., Recognition of earthquake-prone areas. XVIII. Himalaya (M ≥ 6.5), in Vychislitel’naya seismologiya, Vyp. 25: Problemy prognoza zemletryasenii i interpretatsiya seismologicheskikh dannykh (Computational Seismology, Vol. 25: Earthquake Prediction Problems and Interpretation of Seismological Data), Keilis-Borok, V.I. and Levshin, A.L., Eds., Moscow: Nauka, 1992b, pp. 71–83.

Bongard, M.M., Problema uznavaniya (Problem of Recognition), Moscow: Nauka, 1967.

Caputo, M., Keilis-Borok, V., Oficerova, E., Ranzman, E., Rotwain, I., and Solovjeff, A., Pattern recognition of earthquake-prone areas in Italy, Phys. Earth Planet Int., 1980, vol. 21, pp. 305–320.

Cisternas, A., Godefroy, P., Gvishiani, A., Gorshkov, A.I., Kossobokov, V., Lambert, M., Ranzman, E., Sallantin, J., Soldano, H., Soloviev, A., and Weber, C., A dual approach to recognition of earthquake prone areas in the western Alps, Ann. Geophys., 1985, vol. 3, no. 2, pp. 249–270.

Gelfand, I.M., Guberman, Sh., Izvekova, M.L., Keilis-Borok, V.I., and Ranzman, E.Ya., Criteria of high seismicity determined by pattern recognition, Tectonophysics, 1972a, vol. 13, nos. 1–4, pp. 415–422.

Gelfand, I.M., Guberman, Sh.A., Izvekova, M.L., Keilis-Borok, V.I., and Ranzman, E.Ya., On the criteria of high seismicity, Dokl. Akad. Nauk SSSR, 1972b, vol. 202, no. 6, pp. 1317–1320.

Gelfand, I.M., Guberman, Sh.A., Izvekova, M.L., Keilis-Borok, V.I., and Ranzman, E.Ya., Recognition of earthquake-prone areas. I. Pamir and Tien Shan, in Vychislitel’naya seismologiya, Vyp. 6: Vychislitel’nye i statisticheskie metody interpretatsii seismicheskikh dannykh (Computational Seismology, Vol. 6: Computational and Statistical Methods for Interpretation of Seismic Data), Keilis-Borok, V.I., Ed., Moscow: Nauka, 1973, pp. 107–133.

Gelfand, I.M., Guberman, Sh.A., Zhidkov, M.P., Keilis-Borok, V.I., Ranzman, E.Ya., and Rotwain, I.M., Recognition of earthquake-prone areas. II. Four regions in Asia Minor and South-East Europe, in Vychislitel’naya seismologiya, Vyp. 7: Mashinnyi analiz tsifrovykh seismicheskikh dannykh (Computational Seismology, Vol. 7: Computerized Analysis of Digital Seismic Data), Keilis-Borok, V.I., Ed., Moscow: Nauka, 1974a, pp. 3–40.

Gelfand, I.M., Guberman, Sh.A., Zhidkov, M.P., Keilis-Borok, V.I., Ranzman, E.Ya., and Rotwain, I.M., Recognition of earthquake-prone areas. III. The case when the boundaries of disjunctive nodes are not known, in Vychislitel’naya seismologiya, Vyp. 7: Mashinnyi analiz tsifrovykh seismicheskikh dannykh (Computational Seismology, Vol. 7: Computerized Analysis of Digital Seismic Data), Keilis-Borok, V.I., Ed., Moscow: Nauka, 1974b, pp. 41–64.

Gelfand, I.M., Guberman, Sh.A., Keilis-Borok, V.I., Knopoff, L., Press, F.S., Ranzman, E.Ya., Rotwain, I.M., and Sadovsky, A.M., Conditions of occurrence of the strong earthquakes (California and some other regions), in Vychislitel’naya seismologiya. Vyp. 9: Issledovanie seismichnosti i modelei Zemli (Computational Seismology. Vol. 9: Study of Seismicity and Models of the Earth), Keilis-Borok, V.I., Ed., Moscow, 1976a, pp. 3–91.

Gelfand, I.M., Guberman, Sh.A., Keilis-Borok, V.I., Knopoff, L., Press, F., Ranzman, I.Ya., Rotwain, I.M., and Sadovsky, A.M., Pattern recognition applied to earthquake epicenters in California, Phys. Earth Planet. Inter., 1976b, vol. 11, pp. 227–283.

Glasko, M.P. and Ranzman, E.Ya., On morphostructural nodes-the areas of activation of recent land forming processes, Geomorfologiya, 1992, no. 4, pp. 53–61.

Gorshkov, A.I., Caputo, M., Keilis-Borok, V.I., Ofitserova, E.I., Ranzman, E.Ya., and Rotwain, I.M., Recognition of earthquake-prone areas. IX. Italy, M ≥ 6.0, in Vychislitel’naya seismologiya. Vyp. 12: Teoriya i analiz seismologicheskikh nablyudenii (Computational Seismology, Vol. 12: Theory and Analysis of seismological Observations), Keilis-Borok, V.I., Ed., Moscow, 1979, pp. 3–17.

Gorshkov, A.I., Zhidkov, M.P., Ranzman, E.Ya., and Tumarkin, A.G., Morphostructure of Lesser Caucasus and locations of the earthquakes, M ≥ 5.5, Izv. Akad. Nauk SSSR, Fiz. Zemli, 1991, no. 6, pp. 30–38.

Gorshkov, A.I., Kossobokov, V.G., Ranzman, E.Ya., and Soloviev, A.A., Verification of the results of recognition of earthquake-prone areas from 1972 to 2000, in Vychislitel’naya seismologiya. Vyp. 32: Problemy dinamiki litosfery i seismichnosti (Computational Seismology, Vol. 32: Problems of Dynamics of the Lithosphere and Seismicity), Molchan, G.M., Naimark, B.M., and Levshin, A.L., Eds., Moscow: GEOS, 2001, pp. 48–57.

Gorshkov, A., Kossobokov, V., and Soloviev, A., Recognition of earthquake-prone areas, in Nonlinear Dynamics of the Lithosphere and Earthquake Prediction, Keilis-Borok, V.I. and Soloviev, A.A., Eds., Berlin: Springer, 2003, pp. 239–310.

Gorshkov, A.I., Panza, G.F., Soloviev, A.A., and Aoudia, A., Identification of seismogenic nodes in the Alps and Dinarides, Bolletino della Societa Geologica Italiana, 2004, vol. 123, no. 1, pp. 3–18.

Gorshkov, A.I., Panza, G.F., Soloviev, A.A., Aoudia, A., and Peresan, A., Delineation of the geometry of nodes in the Alps-Dinarides hinge zone and recognition of seismogenic nodes, Terra Nova, 2009, vol. 21, pp. 257–264.

Gorshkov, A.I., Raspoznavanie mest sil’nykh zemletryasenii v Al’piisko-Gimalaiskom poyase. Vychislitel’naya seismologiya, Vyp. 40 (Recognition of the Earthquake-Prone Areas within the Alpine-Himalaya Belt. Computational Seismology, Vol. 40), Moscow: KRASAND, 2010.

Gorshkov, A.I., Soloviev, A.A., Jiménez, M.J., García-Fernández, M., and Panza, G.F., Recognition of earthquake-prone areas (M ≥ 5.0) in the Iberian Peninsula, Rendiconti Lincei, 2010, vol. 21, no. 2, pp. 131–162.

Gvishiani, A.D. and Solov’ev, A.A., On the confinement of epicenters of the strong earthquakes to the intersections of morphostructural lineaments in South America, in Vychislitel’naya seismologiya, Vyp. 13: Metody i algoritmy interpretatsii seismologicheskikh dannykh (Computational Seismology, Vol. 13: Methods and Algorithms for Interpretation of Seismological Data), Keilis-Borok, V.I. and Levshin, A.L., Eds., Moscow: Nauka, 1981, pp. 46–50.

Gvishiani, A.D., Zhidkov, M.P., and Soloviev, A.A., Recognition of earthquake-prone areas. X. The probable locations of magnitude M ≥ 7.75 earthquakes on the Pacific Coast of South America, in Vychislitel’naya seismologiya, Vyp. 14: Matematicheskie modeli stroeniya Zemli i prognoza zemletryasenii (Computational Seismology, Vol. 13: Mathematical Models of the Earth’s Structure and Earthquake Prediction), Keilis-Borok, V.I. and Levshin, A.L., Eds., Moscow: Nauka, 1982, pp. 20–33.

Gvishiani, A.D., and Soloviev, A.A., Recognition of places on the Pacific coast of the South America where strong earthquakes may occur, Earthq. Predict. Res., 1984, vol. 2, pp. 237–243.

Gvishiani, A.D., Zhidkov, M.P., and Soloviev, A.A., On application of the criteria of high seismicity of Andean mountain belt to Kamchatka, Izv. Akad Nauk SSSR, Fiz. Zemli, 1984, no. 1, pp. 20–33.

Gvishiani, A.D., Gorshkov, A.I., Kossobokov, V.G., and Ranzman, E.Ya., Morphostructures and locations of the earthquakes of Greater Caucasus, Izv. Akad. Nauk SSSR, Fiz. Zemli, 1986, no. 9, pp. 45–55.

Gvishiani, A.D., Gorshkov, A.I., and Kossobokov, V.G., Recognition of highly seismically active zones in Pyrenees, Dokl. Akad. Nauk SSSR, 1987, vol. 292, no. 1, pp. 56–59.

Gvishiani, A., Gorshkov A., Kossobokov V., Cisternas A., Philip H., and Weber C., Identification of seismically dangerous zones in the Pyrenees, Ann. Geophys., 1987a, vol. 5B, no. 6, pp. 681–690.

Gvishiani, A.D., Gorshkov, A.I., Kossobokov, V.G., Cisternas, A., and Philip, E., Recognition of earthquake-prone areas. XIV. Pyrenees and Alps, in Vychislitel’naya seismologiya, Vyp. 20: Chislennoe modelirovanie i analiz geofizicheskikh protsessov (Computational Seismology, Vol. 20: Numerical Simulation and Analysis of Geophysical Processes), Keilis-Borok, V.I. and Levshin, A.L., Eds., Moscow: Nauka, 1987b, pp. 123–135.

Gvishiani, A.D., Gorshkov, A.I., Zhidkov, M.P., Ranzman, E.Ya., and Trusov, A.V., Recognition of earthquakeprone areas. XV. Morphostructural nodes of the Greater Caucasus, M ≥ 5.5, in Vychislitel’naya seismologiya. Vyp. 20: Chislennoe modelirovanie i analiz geofizicheskikh protsessov (Computational Seismology. Vol. 20: Numerical Simulation and Analysis of Geophysical Processes), Keilis-Borok, V.I., Ed., Moscow, 1987c, pp. 136–148.

Gvishiani, A.D., Gorshkov, A.I., Ranzman, E.Ya., Cisternas, A, and Soloviev, A.A., Prognozirovanie mest zemletryasenii v regionakh umerennoi seismichnosti (Forecasting the Earthquake Locations in the Regions of Moderate Seismic Activity), Moscow: Nauka, 1988.

Gvishiani, A.D., Agayan, S.M., Dobrovolsky, M.N., and Dzeboev, B.A., Objective classification of the epicenters and recognition of the earthquake-prone areas in California, Geoinformatika, 2013a, no. 2, pp. 44–57.

Gvishiani, A., Dobrovolsky, M., Agayan, S., and Dzeboev, B., Fuzzy-based clustering of epicenters and strong earthquake-prone areas, Environ. Eng. Manage. J., 2013b, vol. 12, no. 1, pp. 1–10.

Kossobokov, V.G. and Soloviev, A.A., Analysis of the locations of the epicenters with M ≥ 5.5 relative to the intersections of morphostructural lineaments in the east of Central Asia, in Vychislitel’naya Seismologiya. Vyp. 14. Matematicheskie modeli stroeniya Zemli i prognoza zemletryasenii (Computational Seismology, Vol. 14: Mathematical Models of the Earth’s Structure and Earthquake Prediction), Keilis-Borok, V.I. and Levshin, A.L., Eds., Moscow: Nauka, 1982, pp. 74–76.

Ranzman, E.Ya., Mesta zemletryasenii i morfostruktura gornykh stran (Locations of the Earthquakes and Morphostructure of Mountain Regions), Moscow: Nauka, 1979.

Weber, K., Gvishiani, A.D., Gaudefroy, P., Gorshkov, A.I., Kossobokov, V.G., Lambert, S., Ranzman, E.Ya., Sallantain, J., Saldano, A., and Soloviev, A.A., Recognition of the areas of probable occurrence of strong earthquakes. XII. Two approaches to forecasting the location of the probable occurrence of strong earthquakes in West Alps, in Vychislitel’naya seismologiya. Vyp. 18. Teoriya i analiz seismicheskoi informatsii, (Computational Seismology. Vol. 18: Theory and Analysis of Seismic Information), Keilis-Borok, V.I., Ed., Moscow, 1985, pp. 139–154.

Zhidkov, M.P. and Kossobokov, V.G., Recognition of earthquake-prone areas. VIII: Intersections of the lineaments in the western part of Central Asia, in Vychislitel’naya seismologiya. Vyp. 11. Voprosy prognoza zemletryasenii i stroeniya Zemli (Computational Seismology, Vol. 11: Problems of Earthquake Prediction and Structure of the Earth), Keilis-Borok, V.I., Ed., Moscow, 1978, pp. 48–71.