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Destructive Crimean Earthquake in the Second Half of the 15th Century

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Abstract

Four Crimean archeological monuments bearing traces of specific deformations in their structures are considered. Detailed analysis of these structures revealed that they suffered from seismic impacts in the medieval period: such deformations as interblock cracks, cracks in windows and window sills, clockwise or counterclockwise rotations of wall sections, upslope toppling, deformation (short-term opening) arch structures, etc. Archeological and historical analysis allowed chronological stratification of these seismogenic deformations, making it possible to identify and date several medieval earthquakes. Traces of one of them (which occurred in the second half of the 15th century) were found at three monuments: the Ilka tile production center, the Mangup fortress, and the Chorgun tower. Maximum seismic impacts, which caused damage to the Ilka tile production center (one of its kilns), Chorgun tower, and the Theodoro Palace of Dominus, apparently originated from the West Crimean seismogenic zone, where earthquakes with M ≥ 6.5 can occur. This earthquake dates back to the second half of the 15th century. Earlier, this earthquake was known only from one historical source and did not raise much confidence among researchers. However, the discovery and description of seismogenic deformations of the Funa fortress, attributed to the year 1423, made it possible to prove the occurrence of another strong seismic event in Crimea in the second half of the 15th century, in addition to the well-known earthquake of 1423.

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REFERENCES

  1. Belik, Yu.L., Korzhenkov, A.M., Kulikov, A.V., Larkov, A.S., Marahanov, A.N., Ovsyuchenko A.N., and Rogozhin, E.A., Seismogenic deformations in the walls of the late medieval Yeni-Kale fortress in Eastern Crimea, Seism. Instrum., 2017, vol. 53, no. 2, pp. 134–145.

    Article  Google Scholar 

  2. Çelebi, E., Kniga puteshestviya. Krym i sopredel’nye oblasti (Book of Travels: Crimea and Adjacent Regions), Simferopol: Dolya, 2008.

  3. Ioganson, L.I., Analysis of historical sources on earthquakes in Crimea, Seism. Instrum., 2018, vol. 54, no. 3, pp. 314–326. https://doi.org/10.3103/S074792391803012X

    Article  Google Scholar 

  4. Khapaev, V.V., Written sources on the history of Crimean earthquakes for the ancient and medieval periods, Uch. Zap. Tavricheskogo Nats. Univ.,Ser. Istor., 2008, vol. 21, no. 1, pp. 3–8.

    Google Scholar 

  5. Kirilko, V.P., Krepostnoi ansambl’ Funy (1423–1475 gg.) (Funa Fortress, 1423–1475), Kiev: Stilos, 2005.

  6. Korjenkov, A.M. and Schmidt, K., An archaeoseismological study at Tall Hujayrāt al-Ghuzlān: Seismic destruction of chalcolithic and early Bronze Age structures, in Prehistoric Aqaba I, vol. 23 of Deutsches Archäologisches Institut. Orient-Abtailung. Orient-Archäologie, Rahden, Westf.: Marie Leidorf, 2009, pp. 79–97.

  7. Korjenkov, A.M., Baypakov, K.M., Chang, C., Peshkov, Yu., and Savelieva, T., Traces of ancient earthquakes in Medieval cities along the Great Silk Route, Northern Tien Shan and Dzhungaria, Turk. J. Earth Sci., 2003, vol. 12, pp. 241–261.

    Google Scholar 

  8. Korjenkov, A.M., Arrowsmith, J.R., Crosby, C., Mamyrov, E., Orlova, L.A., Povolotskaya, I.E., and Tabaldiev, K., Seismogenic destruction of the Kamenka medieval fortress, Northern Issyk-Kul region, Tien Shan (Kyrgyzstan), J. Seismol., 2006. No. 10, pp. 431–442.

    Article  Google Scholar 

  9. Korjenkov, A.M., Kaiser, D., and Groupner, S., Preliminary analysis of damages of possible seismic origin to historical monuments in North-Eastern Germany, in Archeosismicite & Vulnerabilite: Actes des Vie et VII Recontres du Groupe APS, Perepignan, 2005, 2008, pp. 199–215.

  10. Korzhenkov, A.M. and Lemzin, I.N., The macroseismic investigation and geological settings of the Kochkor-Ata (1992, M LH = 6.2) earthquake in southern Kyrgyzstan, Nauka Novye Tekhnol., 2000, no. 3, pp. 14–21.

  11. Korzhenkov, A.M. and Mazor, E., Structural reconstruction of seismic events: Ruins of ancient buildings as fossil seismographs, Sci. New Technol., 1999, no. 1, pp. 62–74.

  12. Korzhenkov, A.M. and Mazor, E., Structural reconstruction of seismic events: Seismographic evidence from ruins of ancient cities, Izv. Minist. Obraz. Nauki Resp. Kaz., Nats. Akad. Nauk Resp. Kaz., Ser. Obshchestv. Nauk, 2001, no. 1, pp. 108–125.

  13. Korzhenkov, A.M. and Mazor, E., Archaeoseismological damage patern at the ancient ruins of Rehovotba-Negev, Israel, Archaeol. Anz., 2014, no. 1, pp. 75–92.

  14. Korzhenkov, A.M., Muraliev, A.M., Ormukov, Ch.O., Seitaliev, M.M., Dzhumabaeva, A.B., and Grebenniko-va, V.V., Macroseismic investigation of the December 28, 2006 Kochkor earthquake (M = 5,5, K = 14, I 0 = 7), North Kyrgyzstan, Nauka Nov. Tekhnol., 2006, nos. 3–4, pp. 219–225.

  15. Korzhenkov, A.M., Avanesyan, M.A., Vardanyan, A.A., and Vergino, A., Traces of strong earthquakes of the 9th century in the ruins of Dvin, ancient Armenian capital, Seism. Instrum., 2016a, vol. 52, no. 2, pp. 99–110.

    Article  Google Scholar 

  16. Korzhenkov, A.M., Kol’chenko, V.A., Luzhanskiy, D.V., Rogozhin, E.A., Kazmer, M., Mazeika, J.V., Deev, E.V., Fortuna, A.B., Shen, J., Yudakhin, A.S., Abdieva, S.V., and Rodina, S.N., Archeoseismological investigation of the Kurmenty medieval settlement site, northeastern Issyk-Kul region, Kyrgyzstan, Seism. Instrum., 2016b, vol. 52, no. 2, pp. 154–163.

    Article  Google Scholar 

  17. Korzhenkov, A.M., Moiseev, D.A., Ovsyuchenko, A.N., Larkov, A.S., Marahanov, A.N., Rogozhin E.A., and Emrullaev, Sh.A., Archeoseismological study in Salachik, the ancient capital of Crimean khans, Seism. Instrum., 2017a, vol. 53, no. 3, pp. 244–259. https://doi.org/10.3103/S0747923917030070

    Article  Google Scholar 

  18. Korzhenkov, A.M., Deev, E.V., Luzhanskii, D.V., Abdieva, S.V., Agatova, A.R., Mazeika, J.V., Men’shikov, M.Yu., Rogozhin, E.A., Rodina, S.N., Rodkin, M.V., Sorokin, A.A., Fortuna, A.B., Charimov, T.A., Shen, J., and Yudakhin, A.S., Strong medieval earthquake in the northern Issyk-Kul Lake region (Tien Shan): Results of paleoseismological and archeoseismological studies, Izv., Atmos. Oceanic Phys., 2017b, vol. 53, no. 7, pp. 734–747. https://doi.org/10.1134/S0001433817070064

    Article  Google Scholar 

  19. Korzhenkov, A.M., Luzhanskii, D.V., Abdieva, S.V., Deev, E.V., Pavlis, T.L., Rogozhin, E.A., Turova, I.V., and Yudakhin, A.S., On traces of a strong earthquake in walls of the Sary-Bulun medieval sites along the great silk route (western Issyk-Kul Lake region, Northern Tien Shan), Seism. Instrum., 2017c, vol. 53, no. 4, pp. 309–322. https://doi.org/10.3103/S0747923917040077

    Article  Google Scholar 

  20. Korzhenkov, A.M., Lomakin, D.A., Ovsyuchenko, A.N., Lar’kov, A.S., Marakhanov, A.V., and Rogozhin, E.A., On traces of strong late medieval earthquakes at the Uzbek madrasah–mosque complex, Staryi Krym, Crimea, Izv., Atmos. Oceanic Phys., 2018, vol. 54, no. 7, pp. 627–645. https://doi.org/10.1134/S0001433818070058

    Article  Google Scholar 

  21. Moiseev, D.A., Early Byzantine building kiln pottery from the Ilka pottery center, in II Bakhchisaraiskie nauchnye chteniya pamyati E.V. Veimarna. Tezisy dokladov i soobshchenii Mezhdunarodnoi nauchnoi konferentsii (II Bakhchysarai Scientific Readings in Memory of E.V. Veimarn: Abstracts of Reports of the International Scientific Conference), 2013, pp. 33–34.

  22. Moiseev, D.A., Ceramics of the “Khazarian” and “Femian” times from the excavations of the Ilka pottery center, in Stepi Evropy v epokhu srednevekov’ya (European Steppes in the Medieval Times), vol. 12: Khazarskoe vremya (Khazarian Time), 2014a, pp. 277–318.

  23. Moiseev, D.A., The building ceramic complex of the 14th century from the excavations of a Christian temple in the vicinity of Ilka Mountain, Mater. Arkheol. Istor. Etnogr. Tavrii, 2014b, vol. XIII, pp. 278–310.

    Google Scholar 

  24. Moiseev, D.A., Korzhenkov, A.M., and Ovsyuchenko, A.N., Evidences of seismogenic destruction of tile kiln at the medieval pottery production center in arroyo of the Suatkan spring in Bakhchisarai district, Crimea, Izv., Atmos. Oceanic Phys., 2018, vol. 54, no. 8, pp. 859–897. https://doi.org/10.1134/S000143381808008X

    Article  Google Scholar 

  25. Myts, V.L., Kafa i Feodoro v XV veke. Kontakty i konflikty (Caffa and Theodoro in the 15th Century: Contacts and Conflicts), Simferopol: Universum, 2009.

  26. Naumenko, V.E., Archeological investigations of the medieval monuments of Adym-Chokrak valley, piedmonts of the Crimean Mountains, in Trudy IV (XX) Vserossiiskogo arkheologicheskogo s”ezda v Kazani (Proceedings of the IV (XX) All-Russia Archeological Meeting in Kazan), 2014, vol. II, pp. 302–307.

  27. Naumenko, V.E. and Dushenko, A.A., Dominus palace at the Mangup settlement: Room N in the southern site of the complex (based on the materials from the R.Kh. Leper collection, State Hermitage, and the modern archeological studies), Mater. Arkheol. Istor. Etnogr. Tavrii, 2017, vol. XXII, pp. 187–238.

    Google Scholar 

  28. Nikonov, A.A., Strong earthquakes and seismic potential of the West Crimean (Sevastopol) source zone, Fiz. Zemli, 1994, no. 11, pp. 20–31.

  29. Nikonov, A.A., Ancient destructive earthquakes in Chrsonesus Taurica and their importance for a long-term seismic hazard assessment of the Southwestern Crimea region, Seism. Instrum., 2016, vol. 52, no. 2, pp. 164–194.

    Article  Google Scholar 

  30. Ovsyuchenko, A.N., Menshikov, M.Yu., Rogozhin, E.A., and Korzhenkov, A.M., Cycles of seismic activity in the second half of the holocene in the Western Caucasus and their correlation with stages of civilization development: A case study of the upper reach of the Mzymta River, Izv., Atmos. Oceanic Phys., 2016, vol. 52, no. 8, pp. 816–840.

    Article  Google Scholar 

  31. Ovsyuchenko, A.N., Korzhenkov, A.M., Larkov, A.S., Rogozhin, E.A., and Marahanov, A.V., Estimation of seismic hazards of low-active areas: Case study of Kerch–Taman region, Seism. Instrum., 2018, vol. 54, no. 5, pp. 565–572. https://doi.org/10.3103/S0747923918050109

    Article  Google Scholar 

  32. Pustovitenko, B.G., Kul’chitskii, V.E., and Goryachun, A.V., Zemletryaseniya Krymsko-Chernomorskogo regiona (Earthquakes of the Crimean–Black Sea Region), Kiev: Naukova dumka, 1989.

  33. Seismicheskoe raionirovanie territorii SSSR (Seismic Zoning of the USSR Territory), Moscow: Nauka, 1980.

  34. Vinokurov, N.I., Korzhenkov, A.M., and Rodkin, M.V., Seismic hazard assessment of the Kerch Strait region by archeoseismology data, Vopr. Inzh. Seismol., 2015, vol. 42, no. 2, pp. 51–66.

    Google Scholar 

  35. Vol’vovskii, B.S., Sollogub, V.B., Finetti, I., et al., Stroenie i evolyutsiya zemnoi kory Chernogo morya (Structure and Evolution of the Black Sea Crust), Moscow: Nauka, 1992.

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Funding

The study was supported by the Russian Foundation for Basic Research (project no. 18-35-00521 “Updating and Verification of the Database on the Long-Term Seismic Regime of Crimea Using Seismotectonic and Archeoseismological Methods”) and the partially by a grant from President of the Russian Federation in Support of Leading Scientific Schools (no. NSh-5545.2018.5).

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Correspondence to D. A. Moisieiev.

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Translated by N. Astafiev

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Moisieiev, D.A., Korzhenkov, A.M., Ovsyuchenko, A.N. et al. Destructive Crimean Earthquake in the Second Half of the 15th Century. Seism. Instr. 55, 661–675 (2019). https://doi.org/10.3103/S0747923919060057

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