EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION

Based on the study of the features of seismicity within the limits of continuous permafrost and in transitional climatic zones, the influence of natural and climatic factors on the magnitude of seismic impacts is revealed. The results of studies carried out to develop a regional methodology for pred...

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Published in:Geodynamics & Tectonophysics
Main Authors: V. I. Dzhurik, E. V. Bryzhak, S. P. Serebrennikov, A. Yu. Yeskin
Format: Article in Journal/Newspaper
Language:English
Russian
Published: Russian Academy of Sciences, Siberian Branch, Institute of the Earth's crust 2022
Subjects:
Q
Online Access:https://doi.org/10.5800/GT-2022-13-2s-0623
https://doaj.org/article/7ac97af3cd1a4b62892ed6408fdf2812
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spelling ftdoajarticles:oai:doaj.org/article:7ac97af3cd1a4b62892ed6408fdf2812 2023-05-15T17:55:52+02:00 EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION V. I. Dzhurik E. V. Bryzhak S. P. Serebrennikov A. Yu. Yeskin 2022-06-01T00:00:00Z https://doi.org/10.5800/GT-2022-13-2s-0623 https://doaj.org/article/7ac97af3cd1a4b62892ed6408fdf2812 EN RU eng rus Russian Academy of Sciences, Siberian Branch, Institute of the Earth's crust https://www.gt-crust.ru/jour/article/view/1411 https://doaj.org/toc/2078-502X 2078-502X doi:10.5800/GT-2022-13-2s-0623 https://doaj.org/article/7ac97af3cd1a4b62892ed6408fdf2812 Геодинамика и тектонофизика, Vol 13, Iss 2s (2022) mongolian-siberian region seismicity uyanga sum tupik village seismic impact accelerogram range frequency response maximum acceleration Science Q article 2022 ftdoajarticles https://doi.org/10.5800/GT-2022-13-2s-0623 2022-12-30T21:41:08Z Based on the study of the features of seismicity within the limits of continuous permafrost and in transitional climatic zones, the influence of natural and climatic factors on the magnitude of seismic impacts is revealed. The results of studies carried out to develop a regional methodology for predicting the parameters of seismic effects of strong earthquakes in the Mongolian-Siberian region during permafrost degradation are summarized. These results are based on the data of complex geophysical measurements. They are aimed at developing methods and techniques for assessing the seismic impacts of strong earthquakes on critical engineering structures located within the permafrost zone and at developing recommendations for conducting seismic micro zoning in various seismic-climatic zones of Siberia and Mongolia, taking into account potential earthquake sources.The main goal of this study is to use the data obtained in planning and construction in seismically active permafrost areas. The developed methods and approaches are presented at the current level of requirements for the design of earthquake-resistant structures in the permafrost zone in specific areas: at the Uyanga site sum, located in Northern Mongolia, and at the Tupik site (using the example of the construction of a tailings dam), located in Russia in the Zabaykalsky Krai (Transbaikal Territory). The first section is located in the zone of insular permafrost with a probability of earthquakes of VIII-degree intensity. The second is in the area of continuous permafrost with a likelihood of VII-degree earthquakes.The proposed and implemented integrated methodological approach makes it possible to obtain at the present level of research for the natural and predicted state of soils in the foundations of designed structures a set of seismic characteristics (accelerograms, spectra, frequency characteristics) and the main parameters of seismic effects for predicted strong earthquakes (maximum accelerations, prevailing frequencies, maxima spectra and resonant ... Article in Journal/Newspaper permafrost Siberia Directory of Open Access Journals: DOAJ Articles Geodynamics & Tectonophysics
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
Russian
topic mongolian-siberian region
seismicity
uyanga sum
tupik village
seismic impact
accelerogram
range
frequency response
maximum acceleration
Science
Q
spellingShingle mongolian-siberian region
seismicity
uyanga sum
tupik village
seismic impact
accelerogram
range
frequency response
maximum acceleration
Science
Q
V. I. Dzhurik
E. V. Bryzhak
S. P. Serebrennikov
A. Yu. Yeskin
EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
topic_facet mongolian-siberian region
seismicity
uyanga sum
tupik village
seismic impact
accelerogram
range
frequency response
maximum acceleration
Science
Q
description Based on the study of the features of seismicity within the limits of continuous permafrost and in transitional climatic zones, the influence of natural and climatic factors on the magnitude of seismic impacts is revealed. The results of studies carried out to develop a regional methodology for predicting the parameters of seismic effects of strong earthquakes in the Mongolian-Siberian region during permafrost degradation are summarized. These results are based on the data of complex geophysical measurements. They are aimed at developing methods and techniques for assessing the seismic impacts of strong earthquakes on critical engineering structures located within the permafrost zone and at developing recommendations for conducting seismic micro zoning in various seismic-climatic zones of Siberia and Mongolia, taking into account potential earthquake sources.The main goal of this study is to use the data obtained in planning and construction in seismically active permafrost areas. The developed methods and approaches are presented at the current level of requirements for the design of earthquake-resistant structures in the permafrost zone in specific areas: at the Uyanga site sum, located in Northern Mongolia, and at the Tupik site (using the example of the construction of a tailings dam), located in Russia in the Zabaykalsky Krai (Transbaikal Territory). The first section is located in the zone of insular permafrost with a probability of earthquakes of VIII-degree intensity. The second is in the area of continuous permafrost with a likelihood of VII-degree earthquakes.The proposed and implemented integrated methodological approach makes it possible to obtain at the present level of research for the natural and predicted state of soils in the foundations of designed structures a set of seismic characteristics (accelerograms, spectra, frequency characteristics) and the main parameters of seismic effects for predicted strong earthquakes (maximum accelerations, prevailing frequencies, maxima spectra and resonant ...
format Article in Journal/Newspaper
author V. I. Dzhurik
E. V. Bryzhak
S. P. Serebrennikov
A. Yu. Yeskin
author_facet V. I. Dzhurik
E. V. Bryzhak
S. P. Serebrennikov
A. Yu. Yeskin
author_sort V. I. Dzhurik
title EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
title_short EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
title_full EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
title_fullStr EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
title_full_unstemmed EVALUATION OF SEISMIC IMPACTS OF STRONG EARTHQUAKES IN VARIOUS PERMAFROST AND SEISMIC ZONES OF THE MONGOLIAN-SIBERIAN REGION
title_sort evaluation of seismic impacts of strong earthquakes in various permafrost and seismic zones of the mongolian-siberian region
publisher Russian Academy of Sciences, Siberian Branch, Institute of the Earth's crust
publishDate 2022
url https://doi.org/10.5800/GT-2022-13-2s-0623
https://doaj.org/article/7ac97af3cd1a4b62892ed6408fdf2812
genre permafrost
Siberia
genre_facet permafrost
Siberia
op_source Геодинамика и тектонофизика, Vol 13, Iss 2s (2022)
op_relation https://www.gt-crust.ru/jour/article/view/1411
https://doaj.org/toc/2078-502X
2078-502X
doi:10.5800/GT-2022-13-2s-0623
https://doaj.org/article/7ac97af3cd1a4b62892ed6408fdf2812
op_doi https://doi.org/10.5800/GT-2022-13-2s-0623
container_title Geodynamics & Tectonophysics
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