Study of the process of preparation of strong earthquakes ($M_w \geq 5$) on Sakhalin using the LURR method
Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 5 (2018), pp. 83-98 Cet article a éte moissonné depuis la source Math-Net.Ru

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the seismic regime of southern Sakhalin before the Krillon earthquake on April 23, 2017 ($M_w=5.0$) was Investigated. Seismic hazard calculations were carried out within the framework of the LURR (load-unload response ratio) method. According to the catalog of the local network of field stations, the precursor of earthquake preparation at the end of 2015 was determined. The process of relaxation in the focal zone was studied according to the data of aftershock activity during 2017.
Keywords: seismicity, earthquake prediction, fault.
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     title = {Study of the process of preparation of strong earthquakes ($M_w \geq 5$) on {Sakhalin} using the {LURR} method},
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A. S. Zakupin; E. P. Semenova. Study of the process of preparation of strong earthquakes ($M_w \geq 5$) on Sakhalin using the LURR method. Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 5 (2018), pp. 83-98. http://geodesic.mathdoc.fr/item/VKAM_2018_5_a8/

[1] Yin X.C. et al., “A new approach to Earthquake Prediction: The Load-Unload Response Ratio (LURR) Theory”, Pure Appl. Geophys., 1995, no. 145, 701-715 | DOI

[2] Yangde F., Guoliang Ji, Wenkai Cui, “Parallel Computing for LURR of Earthquake Prediction”, International Journal of Geophysics, 2012, no. 3

[3] Yin X. C., Wang Y. C., Peng K. Y., Bai Y. L., Wang H. T., Yin X. F., “Development of a new approach to Earthquake Prediction: The Load-Unload Response Ratio (LURR) Theory”, Pure Appl. Geophys., 2001, no. 157, 2365-2383

[4] Zakipin A. S., Seis-ASZ, Svidetel'stvo ob oficial'noi regisratsii programmy dlya EVM No2016611230, 28 yanvarya 2016 g.

[5] Zakupin A. S., “Programmnyi kompleks dlya analiza neusoychivosti seismicheskogo protsessa”, Geoinformatika, 2016, no. 1, 34-43

[6] Tikhonov I. N., Zakupin A. S., “Retrospektivnaiy otsenka primenimosti dvukhetapnoi skhemy kratkosrochnogo prognozirovaniya zemletrayseniy ($M \geq 5$) yuzhnogo Sakhalina (po dannym detal'nogo kataloga)”, Vestn. DVO RAN, 2016, no. 1(185), 18–25

[7] Zakupin A. S., Zherdeva O. A., “Retrospektivnaiy otsenka primenimosti metodov srednesrochnogo prognozirovaniya zemletrayseniy dlya severnogo Sakhalina”, Vestn. DVO RAN, 2017, no. 1(191), 18–25

[8] Zakupin A. S., Kamenev P. A., “O vozmozhnosti prostranstvenno-vremennoi lokalizatsii povishennoi seismicheskoi opasnosti v metodike srednesrochnogo prognoza LURR”, Geosistemy perekhodnykh zon, 2017, no. 3(3), 40-49

[9] Yin X. C., Yu H. Z., Kuksenko V., Xu Z. Y., Wu Z., Min Li M, Keyin Peng, Elizarov S., Qi Li., “Load-Unload Response Ratio (LURR), Accelerating Moment Energy Release (AM-ER) and State Vector Saltation as Precursors to Failure of Rock Specimens”, Pure appl. geophys, 16 (2004), 2405–2416

[10] Lockner D. A., Beeler N. M., “Premonitory slip and tidal triggering of earthquakes”, J. Geophys. Res., 104 (1999), 133-201 | DOI

[11] Munk W. H., Cartwright D. E., “Tidal Spectroscopy and Prediction”, Phil. Trans. Roy. Soc. Ser. A., 259 (1966) | DOI

[12] Berger J., Farrell W., Harrison J. C., Levine J., Agnew D. C., ERTID 1: A program for calculation of solid Earth tides, Publication of the Scripps Institution of Oceanography, 1987

[13] Kim Ch. U., Semenova E. P., Zherdeva O. A. i dr., Katalog zemletrjasenij ostrova Sahalin za period 2000-2010 (po dannym avtonomnyh seismicheskih stantsij), Dalnauka, Vladivostok, 2011, 385 pp.

[14] Levin J. N., Mihajlov V. I., Semenova E. P., “Sovremennoe sostojanie seismologicheskih nabljudenij na Sakhaline”, Sovremennye metody obrabotki i interpretatsii seismologicheskih dannyh, Materialy Devjatoj Mezhdunarodnoj sejsmologicheskoj shkoly, GS RAN, Obninsk, 2014, 200-204

[15] Zakupin A. S., Kamenev P. A., Voronina T. E., Boginskaya N. V., “Srednesrochniy prognoz seismicheskoi opasnosti po yugu Sakhalina na 2018 god (po dannym operativnogo kataloga)”, Geosistemy perekhodnykh zon, 2:1 (2018), 52-56

[16] Oskorbin L. S., “Seismogennye zony Sakhalina”, Problemy seismicheskoj opasnosti Dalnevostochnogo regiona, v. VI, Geodinamika tektonosfery zony sochlenenija Tihogo okeana s Evraziej, IMGiG DVO RAN, Juzhno-Sahalinsk, 1997, 154-178

[17] Kharakhinov V. V., Neftegazovaya geologiya Sakhalinskogo regiona, Nauchniy mir, M, 2010, 276 pp.

[18] Saltykov V. A., “Metodika verojatnostnoj otsenki regionalnogo urovnja seismichnosti”, Problemy kompleksnogo geofizicheskogo monitoringa Dalnego Vostoka Rossii, Trudy Vtoroj regionalnoj nauchno-tehnicheskoj konferentsii 11-17 oktjabrja 2009 g, KF GS RAN, Petropavlovsk-Kamchatskij, 2009, 82-85

[19] Saltykov V. A., Kravchenko N. M., Pojgina S. G., “Otsenka urovnja seismicheskoj aktivnosti regionov Rossii”, Zemletrjasenija Rossii v 2008 godu, GS RAN, Obninsk, 2010, 57-63