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105 _ay z 100zy
135 _adrcn ---uucaa
181 0 _ai
182 0 _ab
200 1 _aPhysical Mesomechanics Based Interdisciplinary Approach to the Development of New Methods for Managing Deformation Process in Fault Zones
_fV. V. Ruzhich [et al.]
203 _aText
_celectronic
300 _aTitle screen
320 _a[References: 16 tit.]
330 _aIn the paper, we discuss an approach to the development of methods for managing seismotectonic deformation processes in a multiscale block-structured Earth's Crust from the viewpoint of the concept of physical mesomechanics. To date, there are no convincing results of many year researches in the fields of earthquake prediction and prevention of the dangerous man-caused and tectonic earthquakes. Therefore, in recent decades, there has been an increasingly active search for new ways to solve the problem of seismic safety. The aim of our research team's activity is to provide a scientific rationale for a multidisciplinary approach to reduce the excess level of shear stresses in the fault zones to a safe background level by "spending" it on mechanical destruction and thermal processes in rocks during aseismic and coseismic slip. The authors summarize the main results of modeling of geological and geophysical processes in the field of preparation of different scale seismogenic events, as well as the results of complex man-made impacts on segments of seismically active faults. The data obtained on segments of different scale faults within the Baikal rift zone and Mongolia confirm the possibility of implementing such an approach. For the practical implementation of such a project at highly stressed fault zones, it is necessary to carry out vertical, oblique and horizontal multilateral drilling with an injection of fluids of different compositions in combination with vibro-pulse stimulations to achieve safe relaxation of shear stresses.
333 _aРежим доступа: по договору с организацией-держателем ресурса
461 0 _0(RuTPU)RU\TPU\network\4816
_tAIP Conference Proceedings
463 0 _0(RuTPU)RU\TPU\network\31884
_tVol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
_oProceedings of the International Conference, 1–5 October 2019, Tomsk, Russia
_fNational Research Tomsk Polytechnic University (TPU) ; Institute of Strength Physics and Materials Science SB RAS (Russia) ; eds. V. E. Panin ; S. G. Psakhie ; V. M. Fomin
_v[020300, 4 p.]
_d2019
610 1 _aэлектронный ресурс
610 1 _aтруды учёных ТПУ
610 1 _aфизическая мезомеханика
610 1 _aдеформации
610 1 _aзоны
610 1 _aразломы
610 1 _aсейсмотектонические процессы
610 1 _aземная кора
610 1 _aпрогнозирование
610 1 _aземлетрясения
610 1 _aтехногенные явления
610 1 _aбурение
701 1 _aRuzhich
_bV. V.
_gValery
701 1 _aPsakhie
_bS. G.
_cphysicist
_chead of laboratory, Advisor to the rector, head of Department, Tomsk Polytechnic University, doctor of physico-mathematical Sciences
_f1952-2018
_gSergey Grigorievich
_2stltpush
_3(RuTPU)RU\TPU\pers\33038
701 1 _aShilko
_bE. V.
_cphysicist
_cengineer of Tomsk Polytechnic University, Doctor of physical and mathematical sciences
_f1973-
_gEvgeny Viktorovich
_2stltpush
_3(RuTPU)RU\TPU\pers\35909
701 1 _aLevina
_bE. A.
_gElena
712 0 2 _aНациональный исследовательский Томский политехнический университет
_bИнженерная школа новых производственных технологий
_bОтделение материаловедения
_h7871
_2stltpush
_3(RuTPU)RU\TPU\col\23508
801 2 _aRU
_b63413507
_c20200110
_gRCR
856 4 _uhttps://doi.org/10.1063/1.5132167
942 _cCF