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    Academic Journal

    Συνεισφορές: The work was done as part of state assignments of ICMMG SB RAS (0251-2022-0004), IPHE RAS (0144- 2019-0019) and BB FRC GS RAS (075-01471-22)., Работа выполнена в рамках проектов госзаданий ИВМиМГ СО РАН (№ 0251-2022-0004), ИФЗ РАН (№ 0144-2019-0019) и БуФ ФИЦ ЕГС РАН (№ 075-01471-22).

    Πηγή: Geodynamics & Tectonophysics; Том 13, № 2 (2022); 0589 ; Геодинамика и тектонофизика; Том 13, № 2 (2022); 0589 ; 2078-502X

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.gt-crust.ru/jour/article/view/1450/643; Berngardt O.I., Demianov M.O., Edemsky I.K., Mikhalev A.V., Mylnikova A.A., Predein P.A., Tatkov G.I., Tubanov C.A., Yasyukevich Yu.V., 2014. First Experiments on Studying the Condition of the Atmosphere and of the Ionosphere in the Baikal Region within Nighttime during the Seismic Vibrator Operation. Proceedings of XXXI URSI General Assembly and Scientific Symposium (August 16–23, 2014, Beijing, China). IEEE, p. 1–4. https://doi.org/10.1109/URSIGASS.2014.6929811.; Брагинская Л.П., Григорюк А.П., Ковалевский В.В. Научная информационная система «Активная сейсмология» для комплексных геофизических исследований // Вестник КРАУНЦ. Серия: Науки о Земле. 20157. Вып. 25. № 1. С. 94–98.; Braginskaya L.P., Grigoruk A.P., Kovalevsky V.V., 2021. An Integrated Information Environment to Support Geophysical Research of the Baikal Rift Zone. In: Spatial Data Processing for Monitoring of Natural and Anthropogenic Processes. Proceedings of the All-Russian Conference with International Participation (August 24–27, 2021). Novosibirsk, p. 406–413.; Гольдин С.В., Дядьков П.Г., Дашевский Ю.А. Стратегия прогноза землетрясений на Южно-Байкальском геодинамическом полигоне // Геология и геофизика. 2001. Т. 42. № 10. С. 1484–1496.; Kovalevsky V.V., Braginskaya L.P., Grigoryuk A.P., 2016. An Information Technology of Verification of Earth's Crust Velocity Models. In: Proceedings of the 13th International Scientific-Technical Conference on Actual Problems of Electronics Instrument Engineering (October 3–6, 2016). Institute of Electrical and Electronics Engineers, Novosibirsk, p. 443–446. http://dx.doi.org/10.1109/APEIE.2016.7806369.; Kovalevsky V., Chimed O., Tubanov C., Braginskaya L., Grigoruk A., Fatyanov A., 2017. Vibroseismic Sounding of the Earth's Crust on the Profile Baikal–Ulaanbaatar. In: Proceedings of the International Conference on Astronomy & Geophysics in Mongolia (July 20–22, 2017). Ulaanbaatar, Mongolia, p. 261–265.; Kovalevsky V.V., Fatyanov А.G., Karavaev D.A., Braginskaya L.P., Grigoryuk A.P., Mordvinova V.V., Tubanov C.A., Bazarov A.D., 2019. Research and Verification of the Earth's Crust Velocity Models by Mathematical Simulation and Active Seismology Methods. Geodynamics & Tectonophysics 10 (3), 569–583 (in Russian). https://doi.org/10.5800/GT‐2019‐10‐3‐0427.; Mordvinova V.V., Artemyev A.A., 2010. The Three-Dimensional Shear Velocity Structure of Lithosphere in the Southern Baikal Rift System and Its Surroundings. Russian Geology and Geophysics 51 (6), 694–707. https://doi.org/10.1016/j.rgg.2010.05.010.; Nielsen C., Thybo H., 2009. Lower Crustal Intrusions beneath the Southern Baikal Rift Zone: Evidence from Full-Waveform Modelling of Wide-Angle Seismic Data. Tectonophysics 470 (3–4), 298–318. https://doi.org/10.1016/j.tecto.2009.01.023.; Seleznev V.S., Emanov A.F., Solov'ev V.M., Sal'nikov A.S., Yushin V.I., Kashun V.N., Elagin S.A., Galeva N.A., 2018. Active Seismology and DSS with Powerful Vibrators in Siberia. In: Computational Mathematics and Mathematical Geophysics. Marchuk Scientific Readings. Proceedings of the International Conference Dedicated to the 90th Anniversary of Academician A.S. Alekseeva (October 8–12, 2018). Vol. 4. ICMMG SB RAS, Novosibirsk, p. 349–356 (in Russian).; Sobisevich A.L., Presnov D.A., Tubanov Ts.A., Cheremnykh A.V., Zagorskiy D.L., Kotov A.N., Numalov A.S., 2021. The Baikal Ice-Based Seismoacoustic Experiment. Doklady Earth Sciences 496, 76–79. https://doi.org/10.1134/S1028334X21010219.; Tat'kov G.I., Tubanov C.A., Bazarov A.D., Tolochko V.V., Kovalevsky V.V., Braginskaya L.P., Grigoryuk A.P., 2013. Vibroseismic Study of the Lithosphere of the Baikal Rift Zone and Adjacent Areas. National Geology 3, 16–23 (in Russian); Tcibulchik G.M. (Ed.), 2004. Active Seismology with Powerful Vibrational Sources. GEO, Novosibirsk, 386 p. (in Russian).; Yushin V.I., Geza N.I., Velinsky V.V., Mishurov V.V., Speransky N.F., Savvinikh V.S., Astafiev V.N., 1994. Vibro-Seismic Monitoring in the Baikal Region. Journal of Earthquake Prediction Research 3, 119–134.

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    Πηγή: Relevant lines of scientific research: theory and practice; № 3(9); 104-106 ; Актуальные направления научных исследований: от теории к практике; № 3(9); 104-106 ; ISSN: 2412-0510 ; 2412-0510

    Περιγραφή αρχείου: text/html

    Relation: info:eu-repo/semantics/altIdentifier/pissn/2412-0510; https://interactive-plus.ru/e-articles/272/Action272-112152.pdf; 1. Воскресенский Ю.Н. Изучение изменений амплитуд сейсмических отражений для поисков и разведки залежей углеводородов. – М: РГУ нефти и газа им. Губкина, 2011. – 68 с.; 2. Разин А.В. Применение геофизики при изучении месторождений нефти и газа / А.В. Разин, В.П. Меркулов, С.А. Чернов. – Т.: ТПУ, 2004. – 332 с.

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