Инд. авторы: Korzhenkov A.M., Arauthorsmith J.R., Crosby C.J., Guralnik B., Rogozhin E.A., Sorokin A.A., Abdieva S.V., Fortuna A.B., Yudakhin A.S., Agatova A.R., Deev E.V., Mazeika J.V., Rodkin M.V., Shen J.
Заглавие: Strong Paleoearthquakes along the Aksuu Border Fault according to the Results of Dating the Offset Terrace Complex of the Chon-Aksuu River, Northern Tien Shan
Библ. ссылка: Korzhenkov A.M., Arrowsmith J.R., Crosby C.J., Guralnik B., Rogozhin E.A., Sorokin A.A., Abdieva S.V., Fortuna A.B., Yudakhin A.S., Agatova A.R., Deev E.V., Mazeika J.V., Rodkin M.V., Shen J. Strong Paleoearthquakes along the Aksuu Border Fault according to the Results of Dating the Offset Terrace Complex of the Chon-Aksuu River, Northern Tien Shan // Izvestiya. Physics of the Solid Earth. - 2018. - Vol.54. - Iss. 2. - P.252-268. - ISSN 1069-3513. - EISSN 1531-8451.
Внешние системы: DOI: 10.1134/S106935131802009X; РИНЦ: 35519465; SCOPUS: 2-s2.0-85045409882; WoS: 000429948800006;
Реферат: eng: The study and radiocarbon dating of the low alluvial terraces of the Chon-Aksuu River, in the Northern Issyk-Kul region, which were broken by the Kebin (Kemin) earthquake of 1911 (Ms = 8.2, Io = 10 to 11), are carried out. The obtained radiocarbon dated ages refer to the second half of the Holocene. Since that time, at least eight strong earthquakes took place along this (Chon-Aksuu) segment of the Aksuu border fault. Three seismic events, including the earthquake of 1911 occurred in the second millennium A.D. This outburst of seismic energy was preceded by two millennia of seismic quiescence, which set in after another pulse of seismic activation. The latter lasted for 1.5 millennia and included five strong earthquakes. The recurrence period of seismic events during the activations is 300-600 years. Hence, the seismic regime along the Chon-Aksuu segment of the Aksuu border fault in the second half of the Holocene was a succession of two seismic activations, each with a duration of 1.0-1.5 ka, which were separated by a 2-ka interval of seismic quiescence. Therefore, the absolute datings of the river terraces of different ages which have been broken by a seismogenic rupture can serve as a reliable source of information about the age of the strong earthquakes that occurred along the seismogenic fault.
Ключевые слова: recurrence of earthquakes; river terraces; structural geomorphology; paleoseismology; strong earthquakes; seismic rupture; Aksuu ramp graben; Issyk-Kul; Tien Shan; radiocarbon dating; seismic quiescence;
Издано: 2018
Физ. характеристика: с.252-268
Цитирование: 1. Abdrakhmatov, K.E., Strom, A.L., Delvaux, D., Havenith, H.-B., and Vittori, E., Temporary clustering of strong earthquakes of Northern Tien Shan, Vestn. Inst. Seismol. Nats. Akad. Nauk Kyrgyz Resp., 2013, no. 1, pp. 9–15. 2. Abdrakhmatov, K. E., Walker, R.T., Campbell, G.E., Carr, A.S., Elliott, A., Hillemann, C., Hollingsworth, J., Landgraf, A., Mackenzie, D., Mukambayev, A., Rizza, M., and Sloan, R.A. Multisegment rupture in the 11 July 1889 Chilik earthquake (Mw 8.0–8.3), Kazakh Tien Shan, interpreted from remote sensing, field survey, and paleoseismic trenching, J. Geophys. Res., Solid Earth, 2017, vol. 121, pp. 1–22. doi 10.1002/2015JB012763 3. Arrowsmith, J.R., Crosby, C.J., Korjenkov, A.M., Mamyrov, E., and Povolotskaya, I.E., Surface rupture along the Chon Aksuu and Aksu (eastern) segments of the 1911 Kebin (Chon-Kemin) earthquake, Tien Shan, Kyrgyzstan. EOS Trans. AGU, 2004, vol. 85, no. 47, Fall Meet. Suppl., Abstract T14C-02. 4. Arrowsmith, J.R., Crosby, C.J., Korjenkov, A.M., Mamyrov, E., and Povolotskaya, I.E., Surface rupture of 1911 Kebin (Chon-Kemin) earthquake, Northern Tien Shan, Kyrgyzstan, EOS Trans. AGU, 2005, vol. 86, no. 52, Fall Meet. Suppl., Abstract T51F-05. 5. Arrowsmith J.R., Crosby, C.J., Korzhenkov, A.M., Mamyrov, E., Povolotskaya, I., Guralnik, B., and Landgraf, A., Surface rupture of the 1911 Kebin (Chon-Kemin) earthquake, Northern Tien Shan, Kyrgyzstan, in Seismicity, Fault Rupture and Earthquake Hazards in Slowly Deforming Regions, Landgraf, A., Kübler, S., Hintersberger, E., and Stein, S., Eds., Bath: Geological Society, London, Special Publications, 2017, vol. 432, pp. 233–254. 6. Bogdanovich, K.I., Kark, I.M., Korolkov, B.Ya., and Mushketov, D.I., Earthquake in the Northern Districts of Tien Shan, 22 December 1910 (January 4, 1911). Saint Petersburg, Commission Of Geology Committee, 1914. 7. Bronk Ramsey, C. Deposition models for chronological records, Quat. Sci. Rev., 2008, vol. 27, nos. 1–2, pp. 42–60. 8. Charimov, T.A., Povolotskaya, I.E., and Korzhenkov, A.M., Seismodeformations of Northern Tien Shan, Izv. Vuzov, 2005, no. 1, pp. 211–229. 9. Chediya, O.K., Morfostruktury i noveishii tektogenez Tyan’-Shanya (Morphostructures and Neotectogenesis of Tien Shan), Frunze: Ilim, 1986. 10. Chediya, O.K. and Korzhenkov, A.M., Long-term preservation of geomorphic traces of ancient seismic catastrophes, Geomorphologiya, 1997, no. 3, pp. 88–89. 11. Chediya, O.K., Abdrakhmatov, K.E., Lemzin, I.N., and Korzhenkov, A.M., Seismogravitation structures of Kyrgyzstan, in Geologiya kainozoya i seismotektonika Tyan’-Shanya (Geology of the Cenozoic and Seismotectonics of Tien Shan), Bishkek: Ilim, 1994, pp. 85–97. 12. Crosby, C., Arrowsmith, J., Korjenkov, A., Guralnik, B., Mamyrov, E., Povolotskaya, I., The hunt for surface rupture from the 1889 Ms 8.3Chilik earthquake, Northern Tien-Shan, Kyrgyzstan and Kazakhstan, AGU Fall Meeting Abstracts, 2007, F5, poster presentation. 13. Deev, E.V. and Korzhenkov, A.M., Paleoseismological studies in the epicentral area of the 1911 Kemin earthquake (northern Tien Shan), Russ. Geol. Geophys., 2016, vol. 57, no. 2, pp. 337–343. 14. Delvaux, D., Abdrakhmatov, K.E., Lemzin, I.N., and Strom, A.L., Landslides and surface breaks of the 1911, Ms = 8.2 Kemin earthquake, Kyrgyzstan, Geol. Geofiz., 2001, no. 10, pp. 1667–1677. 15. Korzhenkov, A.M., Seismogeologiya Tyan’-Shanya v predelakh territorii Kyrgyzstana i prilegayushchikh raionov Seismogeology of the Tien Shan (within Kyrgyzstan Territory and Neighboring Regions), Bishkek: Ilim, 2006. 16. Korjenkov, A.M., Kovalenko, V.A., and Usmanov, S.F., Long-term preservation of paleoseismic deformations as a tool for revealing traces of ancient seismic catastrophes (on example of Chon-Kemin Valley, Kyrgyzstan), Proc. 7th Int. Symp. on High Mountain Remote Sensing Cartography, Bishkek, Kyrgyzstan, July 2002, Dresden: Kartographische Bausteine. 2004, Band 23, pp. 137−153. 17. Korjenkov, A.M., Michajljow, W., Wetzel, H.-U., Abdybashev, U., and Povolotskaya, I.E., International Training Course “Seismology and Seismic Hazard Assessment,” Bishkek, 2006. Field excursion guidebook, Bischkek–Potsdam: GFZ-ZAIAG, 2006. 18. Korzhenkov, A.M., Povolotskaya, I.E., and Mamyrov, E., Morphologic expression of Quaternary deformation in the Northwestern foothills of the Ysyk-Köl basin, Tien Shan, Geotectonics, 2007, vol. 41, no. 2, pp. 130–148. 19. Kuchai, V.K., Results of re-examination of residual deformations in the Pleistocene region of the Kebin earthquake, Geol. Geofiz., 1969, no. 8, pp. 101–108. 20. Mushketov, I.V., The Chilik Earthquake of June 30 (July 12), 1889, in Materialy dlya izucheniya zemletryasenii v Rossii (Data for Studying the Earthquakes in Russia), vol. 1, St.-Petersburg: Izv. Russ. Geogr. Obshch., 1899, pp. 11–46. 21. Reimer, P.J., Bard, E., Bayliss, A., Beck, J.W., Blackwell, P.G., Bronk Ramsey, C., Buck, C.E., Edwards, R.L., Friedrich, M., Grootes, P.M., Guilderson, T.P., Haflidason, H., Hajdas, I., Hatté, C., Heaton, T.J., et al., IntCal13 and Marine13 radiocarbon age calibration curves 0–50000 years cal BP, Radiocarbon, 2013, vol. 55, no. 4, pp. 1869–1887. 22. Selander, J., Inherited strike-slip faults as an origin for basement-cored uplifts: example of the Kungey and Zailiskey ranges, northern Tien Shan. M.S. Thesis, University of North Carolina, Chapel Hill, 2008. 23. Trifonov, V.G., Korzhenkov, A.M., and Khaled, O.M., Recent geodynamics of major strike-slip zones, Geod. Geodyn., 2015, no. 10, pp. 1–23. 24. Utirov, Ch.U., Seismis deformations, in Geologicheskie osnovy seismicheskogo raionirovaniya Issyk-Kul’skoi vpadiny (Geological Basis of Seismic Zoning of the Issyk Kul Depression), Frunze: Ilim, 1978, pp. 91–111. 25. Utirov, Ch.U., Seismic and paleoseismic deformations, in Detal’noe seismicheskoe raionirovanie Issyk-Kul’skoi vpadiny (Detailed Seismic Zoning of the Issyk Kul Depression), Abdrakhmatov, K.E., Ed., Bishkek: Ilim, 1993, pp. 113–125.