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Геодинамика и тектонофизика

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Семинский Константин Жанович

 Семинский Константин Жанович

 доктор геол.-мин. наук

 Институт земной коры СО РАН, Иркутск, Россия

 ORCID

 

К.Ж. Семинский – специалист в области тектонофизики разломов. Главным теоретическим результатом его исследований является вывод, что основные закономерности формирования внутренней структуры континентальных разломных зон растяжения, сжатия и сдвига (т.е. состав парагенезиса разрывов 2-го порядка, характер стадийности, виды неравномерности в нарушенности субстрата) являются для них едиными, так как определяются видом, кинетикой и способом распространения реализующейся в их пределах прогрессирующей деформации скалывания. Им предложена тектонофизическая модель формирования разломной зоны, а также универсальный парагенезис разрывов 2-го порядка, включающий группы опережающих, оперяющих и сопутствующих нарушений.

Практическая значимость проведенных К.Ж. Семинским исследований обусловливается разработкой комплекса признаков для определения стадий развития разломов, созданием тектонофизической систематики связанных с ними структур рудных месторождений, а также разработкой метода спецкартирования разломных зон на основе массового исследования повсеместно встречающейся “немой” трещиноватости. Метод позволяет установить границы разломных зон, динамические обстановки их формирования и тип зональности внутреннего строения по характеру пространственного распределения троек примерно перпендикулярных друг другу систем трещин, которые составляют основу разрывных сетей вблизи сбросов, сдвигов, надвигов и взбросов.

 

Публикации 2010–2023


  • Seminsky K.Z., Bobrov A.A., 2023. Irregularities in the Relationship of Variations in the Radon Volume Activity and Atmospheric Pressure during Seismic Activation (by the Example of the Baikal Region). DOKLADY EARTH SCIENCES 510, 312–316. https://doi.org/10.1134/S1028334X23600160

  • Seminsky K.Zh., Burzunova Yu.P., Bornyakov S.A., Miroshnichenko A.I., Cheremnykh A.S., Seminsky A.K., Buddo I.V., Smirnov A.S., Gorlov I.V., 2023. Analysis of the Fault-Block Structure and Stress State of the Sedimentary Cover in Gas-Condensate Deposits: Basics of the Tectonophysical Approach. GEODYNAMICS & TECTONOPHYSICS 14(2), 0689. https://doi.org/10.5800/GT-2023-14-2-0689
  • Seminsky K.Z., Dobrynina A.A., Bornyakov S.A., Sankov V.A., Pospeev A.V., Rasskazov S.V., Perevalova N.P., Seminskiy I.K., Lukhnev A.V., Bobrov A.A., Chebykin E.P., Edemskiy I.K., Ilyasova A.M., Salko D.V., Sankov A.V., Korol S.A., 2022. Integrated Monitoring of Hazardous Geological Processes in Pribaikalye: Pilot Network and First Results. GEODYNAMICS & TECTONOPHYSICS 13(5), 0677. https://doi.org/10.5800/GT-2022-13-5-0677
  • Seminsky A.K., Seminsky K.Z., 2021. Variations in Radon Activity in the Groundwater of the Southern Baikal Region: Emanation Response of Earthquakes. DOKLADY EARTH SCIENCES 499, 661–665. https://doi.org/10.1134/S1028334X21080134
  • Seminsky K.Zh., Bornyakov S.A., Dobrynina A.A., Radziminovich N.A., Rasskazov S.V., San’kov V.A., Mialle P., Bobrov A.A., Il’yasova A.M., Salko D.V., San’kov A.V., Seminsky A.K., Chebykin E.P., Shagun A.N., German V.I., Tubanov T.A., Ulzibat, M., 2021. The Bystrinskoe Earthquake in the Southern Baikal Region (21 September 2020, MW=5.4): Main Parameters, Precursors, and Accompanying Effects. RUSSIAN GEOLOGY AND GEOPHYSIC 62(5), 589–603. https://doi.org/10.2113/RGG20204296
  • Seminsky K.Z., Burzunova Yu.P., Miroshnichenko A.I., Bornyakov S.A., Nezhdanov A.A., Ershov A.V., Smirnov A.S., Buddo I.V., Seminsky A.K., Cheremnykh A.S., Kachinskas I.V., 2021. The Distinquishing Features of the Faults in the Platform Cover: Results of the Application of Tectonophysical Approach to the Study of the Tambey Hydrocarbon Deposit (Yamal Peninsular). GEODYNAMICS & TECTONOPHYSICS 12(4), 969-991. https://doi.org/10.5800/GT-2021-12-4-0566
  • Seminsky K.Zh., Burzunova Yu.P., Seminsky A.K., Cheremnykh A.S., 2021. Specialized Structural Mapping and the Specifics of Its Application for Reconstructions of the Stress-Strain State of Rocks within Structure Complex Hydrocarbon Fields. In: Natural Resources Management as a Cross-Functional Process. Proceedings of the 7th Scientific Exploration Conference. Vol. 2021. EAGE, Tyumen, p. 1–15. https://doi.org/10.3997/2214-4609.202150087
  • Bornyakov S.A., Dobrynina A.A., Seminsky K.Z., Sankov V. A., Radziminovich N. A., Salko D. V., Shagun A. N., 2021. The Bystrinskii Earthquake in the Southern Baikal Region (Sep. 21, 2020, M w = 5.4): General Characteristics, Basic Parameters, and Deformation Signs of the Transition of the Focus to the Meta-Unstable State. DOKLADY EARTH SCIENCES  498, 427–431. https://doi.org/10.1134/S1028334X21050044
  • Seminsky K.Zh., Bornyakov S.A., Bobrov A.A., Shagun A.N., 2020. Experience of using electrical tomography, radon survey and microseismic sounding in search for pipes controlled by fault zones. GEODYNAMICS & TECTONOPHYSICS 11(2), 431–446. https://doi.org/10.5800/GT-2020-11-2-0484
  • Seminsky, K. Zh., Seminsky, A. K., 2019. Radon concentration in groundwater sources of the Baikal region (East Siberia, Russia). APPLIED GEOCHEMISTRY 1, 104446.  https://doi.org/10.1016/j.apgeochem.2019.104446   
  • Seminsky K.Zh., Bobrov A.A., Demberel S., 2019. Radon and Tectonic Activities of Crustal Faults: the Case of Central Mongolia. RUSSIAN GEOLOGY AND GEOPHYSICS 60(2), 204-214. http://dx.doi.org/10.15372/RGG2019016  
  • Seminsky K.Zh., Bobrov A.A., Demberel S., 2019. Relationship between Radon and the Tectonic Activity of Faults in Central Mongolia. DOKLADY EARTH SCIENCES 487(2), 890-893. http://dx.doi.org/10.1134/S1028334X19080166
  • Seminsky K.Zh., Sankov V.A., Ogibenin V.V., Burzunova Yu.P., Miroshnichenko A.I., Gorbunova E.A., Gorlov I.V., Smirnov A.S., Vakhromeev A.G., Buddo I.V., 2018. Tectonophysical Approach to the Analysis of Geological and Geophysical Data on Gas-Condensate Deposits with the Complex Platform Cover. GEODYNAMICS & TECTONOPHYSICS 9(3), 587-627. http://dx.doi.org/10.5800/GT-2018-9-3-0364
  • Seminsky K.Zh., Bobrov A.A., 2018. Geoelectrical Images of Normal Fault Zones: Tectonophysical Interpretation of the Shallow-Depth Electrical Resistivity Tomography Data on the Buguldeika-Chernorud Graben in the Western Baikal Region. GEODYNAMICS & TECTONOPHYSICS 9(4), 1339-1361. http://dx.doi.org/10.5800/GT-2018-9-4-0399
  • Bornyakov S.A., Salko D.V., Seminsky K.Zh., Demberel S., Ganzorig D., Batsaihan T., Togtohbayar S., 2017. Instrumental recording of slow deformation waves in the South Baikal geodynamic study site. DOKLADY EARTH SCIENCES 473(1), 371-374. http://dx.doi.org/10.1134/S1028334X17030229
  • Seminsky K.Zh., Demberel S., Mungunsuren D., 2017. Fault zones and stress fields of the Earth's crust in the vicinity of Ulaanbaatar (Mongolia) at the modern stage of tectogenesis. DOKLADY EARTH SCIENCES 474(1), 511-515. http://dx.doi.org/10.1134/S1028334X17050257
  • Tugarina M.A., Seminsky K.Zh., 2017. Basic Principles of Structural and Hydrogeological Mapping of the Baikal Region. GEODYNAMICS & TECTONOPHYSICS 8(3), 577-579. http://dx.doi.org/10.5800/GT-2017-8-3-0296
  • Seminsky K.Zh., Burzunova Yu.P., Seminsky A.K., Bobrov A.A., 2017. Role of the Structural Factor in the Distribution of High-Radon Groundwater in the Southwestern Flank of the South Baikal Rift Basin. GEODYNAMICS & TECTONOPHYSICS 8(4), 949-969. http://dx.doi.org/10.5800/GT-2017-8-4-0326
  • Seminsky K.Zh., Zaripov R.M., Olenchenko V.V., 2016. Interpretation of shallow electrical resistivity images of faults: tectonophysical approach. RUSSIAN GEOLOGY AND GEOPHYSICS 57(9), 1349-1358. http://dx.doi.org/10.1016/j.rgg.2016.08.020
  • Seminsky K.Zh., Seminsky A.K., 2016. Radon in Groundwaters in the Baikal Region and Transbaikalia: Variations in Space and Time. GEODYNAMICS & TECTONOPHYSICS 7(3), 477-493. http://dx.doi.org/10.5800/GT-2016-7-3-0218
  • Seminsky K.Zh., Zaripov R.M., Olenchenko V.V., 2015. Interpretation of the electrical resistivity tomography data obtained for shallow fault zones: A tectonophysical approach. DOKLADY EARTH SCIENCES 464(2), 1044-1048. http://dx.doi.org/10.1134/S1028334X15100098
  • Seminsky K.Zh., 2015. Specialized Mapping of Crustal Fault Zones. Part 2: Main Stages and Prospects. GEODYNAMICS & TECTONOPHYSICS 6(1), 1-43. http://dx.doi.org/10.5800/GT-2015-6-1-0170
  • Seminsky K.Zh., Bobrov A.A., Demberel S., 2014. Variations in Radon Activity in the Crustal Fault Zones: Spatial Characteristics. IZVESTIYA, PHYSICS OF THE SOLID EARTH 50(6), 795–813. http://dx.doi.org/10.1134/S1069351314060081
  • Seminsky K.Zh., Rasskazov, S.V., Seminsky A.K., Mikheeva E.A., 2014. Radon in Nonradonic Ground Waters of the Baikal Region: Spatial and Temporal Variations. DOKLADY EARTH SCIENCES 457(2), 991–996. http://dx.doi.org/10.1134/S1028334X14080169
  • Seminsky K.Zh., Sherman S.I., Cheremnykh A.V., 2014. Faulting in the lithosphere and associated processes: a review of results of the All-Russia tectonophysics conference held at the Institute of the Earth’s Crust, Siberian Branch of RAS. GEODYNAMICS & TECTONOPHYSICS 5(4), 1077–1082. http://dx.doi.org/10.5800/GT-2014-5-4-0169
  • Bornyakov S.А., Seminsky К.Zh., Buddo V.Yu., Miroshnichenko А.I., Cheremnykh А.V., Cheremnykh А.S., Tarasova А.А., 2014. Main regularities of faulting in lithosphere and their application (based on physical modelling results). GEODYNAMICS & TECTONOPHYSICS 5(4), 823–861. http://dx.doi.org/10.5800/GT-2014-5-4-0159
  • Seminsky К.Zh., 2014. Specialized mapping of crustal fault zones. Part 1: Basic theoretical concepts and principles. GEODYNAMICS & TECTONOPHYSICS 5(2), 445–467. http://dx.doi.org/10.5800/GT-2014-5-2-0136
  • Seminsky K.Zh., Demberel S., Tugarina M.A., Ganzorig D., Bornyakov S.A., 2013. First estimates of soil radon activity in the fault zones of Central Mongolia. DOKLADY EARTH SCIENCES 448(1), 21–24. http://dx.doi.org/10.1134/S1028334X12110128
  • Seminsky K.Zh., 2012. Internal structure of fault zones: spatial and temporal evolution studies on clay models. GEODYNAMICS & TECTONOPHYSICS 3(3), 183–194. http://dx.doi.org/10.5800/GT-2012-3-3-0070
  • Seminsky К.Zh., Bobrov А.А., 2013. The first results of studies of temporary variations in soil-radon activity of faults in Western Pribaikalie. GEODYNAMICS & TECTONOPHYSICS 4(1), 1–12. http://dx.doi.org/10.5800/GT-2013-4-1-0088
  • Seminsky K.Zh., Kozhevnikov N.O., Cheremnykh A.V., Pospeeva E.V., Bobrov A.A., Olenchenko V.V., Tugarina M.A., Potapov V.V., Zaripov R.M., Cheremnykh A.S., 2013. Interblock zones in the crust of the southern regions of East Siberia: tectonophysical interpretation of geological and geophysical data. GEODYNAMICS & TECTONOPHYSICS 4(3), 203–278. http://dx.doi.org/10.5800/GT-2013-4-3-0099
  • Seminsky K.Zh., Demberel S., 2013. The first estimations of soil-radon activity near faults in Central Mongolia. RADIATION MEASUREMENTS 49, 19–34. http://dx.doi.org/10.1016/j.radmeas.2012.12.013
  • Seminsky K.Zh., 2014. Faulting of the lithosphere in the Central Asia and accompanying processes: tectonophysical approach. GEODYNAMICS & TECTONOPHYSICS 5(1), 115–133 (in Russian). http://dx.doi.org/10.5800/GT-2014-5-1-0120
  • Seminsky K.Zh., Bobrov A.A., 2012. Spatial and Temporal Variations of Soil-Radon Activity in Fault Zones of the Pribaikalie (East Siberia, Russia). In: Z. Li, C. Feng (Eds.), Handbook of Radon: Properties, Applications and Health. Nova Sci. Publ. Inc., New York, p. 1–36 (Book Chapter).
  • Seminskii K.Zh., Kozhevnikov N.O., Cheremnykh A.V., Pospeeva E.V., Bobrov A.A., Olenchenko V.V., Tugarina M.A., Potapov V.V., Burzunova Yu.P., 2012. Interblock Zones Of The Northwestern Baikal Rift: Results Of Geological And Geophysical Studies Along The Bayandai Village-Cape Krestovskii Profile. RUSSIAN GEOLOGY AND GEOPHYSICS 53(2), 194–208. http://dx.doi.org/10.1016/j.rgg.2011.12.016
  • Rebetsky Yu.L., Goncharov M.A., Kuzmin Yu.O., Seminsky K.Zh., Sherman S.I., 2012. Tectonophysical meetings in the USSR and Russia: information on the eve of the third Tectonophysical conference in the IPE RAS «Tectonophysics and topical problems in Earth sciences» (Moscow, 8–12 October 2012). GEODYNAMICS & TECTONOPHYSICS 3(3), 309–314. http://dx.doi.org/10.5800/GT-2012-3-3-0076.
  • Seminskii K.Zh., Radziminovich Ya.B., 2011. Cross-sectional sizes and lateral zonality of the Baikal seismic belt. DOKLADY EARTH SCIENCES 438(1), 645–648. http://dx.doi.org/10.1134/S1028334X11050084
  • Seminsky K.Zh., Tugarina M.A., 2011. Underground hydrosphere in the western shoulder of the Baikal rift: results of hydrogeological research in the Bayandai Settlement–Krestovskii Cape profile. DOKLADY EARTH SCIENCES 439(2), 1079–1083. http://dx.doi.org/10.1134/S1028334X11080289
  • Seminsky K.Zh., Tugarina M.A., 2011. Results of comprehensive studies of the underground hydrosphere within the western shoulder of the Baikal rift (as exemplified by the Bayandai – Krestovsky Cape site). GEODYNAMICS & TECTONOPHYSICS 2(2), 126–144. http://dx.doi.org/10.5800/GT-2011-2-2-0037
  • Seminsky K.Zh., Cheremnykh A.V., 2011. Jointing patterns and stress tensors in Cenozoic sediments of the Baikal rift: development of the structural-genetic approach. RUSSIAN GEOLOGY AND GEOPHYSICS 52(3), 353–367. http://dx.doi.org/10.1016/j.rgg.2011.02.008
  • Sherman S.I., Seminsky K.Zh., 2010. Tectonophysical research at Institute of the Earth’s crust SB RAS: major achievements and actual problems. GEODYNAMICS & TECTONOPHYSICS 1(1), 4–23. http://dx.doi.org/10.5800/GT-2010-1-1-0003