Conditions of formation of seismogenic landslides on Sakhalin Island

There is no direct connection between landslide and seismic processes. The increase in humidity of rocks during a long period of high humidity (6-7 years) with a large amount of precipitation causes an increase in the humidity of rocks in landslides to the upper limits of plasticity (or fluidity) of...

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Main Authors: Kazakov Nikolay, Kudryavtsev Sergey
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/14/matecconf_gccets2018_04012.pdf
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spelling doaj-69b0434a204a4427871f61ac896188c52021-02-02T01:37:34ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012650401210.1051/matecconf/201926504012matecconf_gccets2018_04012Conditions of formation of seismogenic landslides on Sakhalin IslandKazakov Nikolay0Kudryavtsev Sergey1Special Design Bureau for Marine Research Automation Tools of the Far Eastern Branch of the Russian Academy of SciencesFar Eastern State Transport UniversityThere is no direct connection between landslide and seismic processes. The increase in humidity of rocks during a long period of high humidity (6-7 years) with a large amount of precipitation causes an increase in the humidity of rocks in landslides to the upper limits of plasticity (or fluidity) of soils, which leads to a decrease in their stability and activation of landslide processes. The consequence of reducing the stability of landslide arrays is to increase the probability of activation of landslide processes under seismic effects on landslide arrays. Strong hydration of rocks during the previous cycle of high humidity is maintained for at least 2 years. Therefore, in the first 2 years after the beginning of the low humidity cycle, the conditions for the activation of landslide processes in an earthquake remain. Similarly, in the first 2 years after the beginning of the high-water cycle, the rocks of landslide massifs are still not sufficiently moistened, and the probability of landslides formation in earthquakes is low. Long-term forecast of seismogenic landslides can be made as a forecast of periods of increased risk of landslides based on the account of the cycles of moisture (increase in precipitation) and physical and mechanical characteristics of rocks of landslides.https://www.matec-conferences.org/articles/matecconf/pdf/2019/14/matecconf_gccets2018_04012.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Kazakov Nikolay
Kudryavtsev Sergey
spellingShingle Kazakov Nikolay
Kudryavtsev Sergey
Conditions of formation of seismogenic landslides on Sakhalin Island
MATEC Web of Conferences
author_facet Kazakov Nikolay
Kudryavtsev Sergey
author_sort Kazakov Nikolay
title Conditions of formation of seismogenic landslides on Sakhalin Island
title_short Conditions of formation of seismogenic landslides on Sakhalin Island
title_full Conditions of formation of seismogenic landslides on Sakhalin Island
title_fullStr Conditions of formation of seismogenic landslides on Sakhalin Island
title_full_unstemmed Conditions of formation of seismogenic landslides on Sakhalin Island
title_sort conditions of formation of seismogenic landslides on sakhalin island
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description There is no direct connection between landslide and seismic processes. The increase in humidity of rocks during a long period of high humidity (6-7 years) with a large amount of precipitation causes an increase in the humidity of rocks in landslides to the upper limits of plasticity (or fluidity) of soils, which leads to a decrease in their stability and activation of landslide processes. The consequence of reducing the stability of landslide arrays is to increase the probability of activation of landslide processes under seismic effects on landslide arrays. Strong hydration of rocks during the previous cycle of high humidity is maintained for at least 2 years. Therefore, in the first 2 years after the beginning of the low humidity cycle, the conditions for the activation of landslide processes in an earthquake remain. Similarly, in the first 2 years after the beginning of the high-water cycle, the rocks of landslide massifs are still not sufficiently moistened, and the probability of landslides formation in earthquakes is low. Long-term forecast of seismogenic landslides can be made as a forecast of periods of increased risk of landslides based on the account of the cycles of moisture (increase in precipitation) and physical and mechanical characteristics of rocks of landslides.
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/14/matecconf_gccets2018_04012.pdf
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