Algorithm for calculating hazard areas of a rock massif based on geomechanical data

Based on the analysis of existing approaches in the prediction of dynamic phenomena of rock pressure, it was established that the basis of most methods is the kinetic concept of the destruction of solids. A team of authors from the Mining Institute of the Far Eastern Branch of Russian Academy of Sci...

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Main Authors: Gladyr Andrei, Rasskazov Maksim, Konstantinov Alexander, Tereshkin Andrei
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/55/e3sconf_ghcrrm2019_01002.pdf
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author Gladyr Andrei
Rasskazov Maksim
Konstantinov Alexander
Tereshkin Andrei
author_facet Gladyr Andrei
Rasskazov Maksim
Konstantinov Alexander
Tereshkin Andrei
author_sort Gladyr Andrei
collection DOAJ
description Based on the analysis of existing approaches in the prediction of dynamic phenomena of rock pressure, it was established that the basis of most methods is the kinetic concept of the destruction of solids. A team of authors from the Mining Institute of the Far Eastern Branch of Russian Academy of Sciences has developed a method of geomechanical monitoring of a rock massif state, which consists of analyzing the dynamics of the acoustic active zones formation and predicting the impact hazard based on the established regularities of changes in the geoacoustic activity. This paper proposes an automated method for identifying focal zones, based on preliminary exclusion of background radiation using a non-parametric density estimation method, identifying seismoacoustic active zones by means of probabilistic cluster analysis and parameterizing focal zones by selecting a characteristic ellipsoid.
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spelling doaj.art-469ac07d6b8648eabf08f654b77260c62022-12-21T23:28:17ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011290100210.1051/e3sconf/201912901002e3sconf_ghcrrm2019_01002Algorithm for calculating hazard areas of a rock massif based on geomechanical dataGladyr AndreiRasskazov MaksimKonstantinov AlexanderTereshkin AndreiBased on the analysis of existing approaches in the prediction of dynamic phenomena of rock pressure, it was established that the basis of most methods is the kinetic concept of the destruction of solids. A team of authors from the Mining Institute of the Far Eastern Branch of Russian Academy of Sciences has developed a method of geomechanical monitoring of a rock massif state, which consists of analyzing the dynamics of the acoustic active zones formation and predicting the impact hazard based on the established regularities of changes in the geoacoustic activity. This paper proposes an automated method for identifying focal zones, based on preliminary exclusion of background radiation using a non-parametric density estimation method, identifying seismoacoustic active zones by means of probabilistic cluster analysis and parameterizing focal zones by selecting a characteristic ellipsoid.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/55/e3sconf_ghcrrm2019_01002.pdf
spellingShingle Gladyr Andrei
Rasskazov Maksim
Konstantinov Alexander
Tereshkin Andrei
Algorithm for calculating hazard areas of a rock massif based on geomechanical data
E3S Web of Conferences
title Algorithm for calculating hazard areas of a rock massif based on geomechanical data
title_full Algorithm for calculating hazard areas of a rock massif based on geomechanical data
title_fullStr Algorithm for calculating hazard areas of a rock massif based on geomechanical data
title_full_unstemmed Algorithm for calculating hazard areas of a rock massif based on geomechanical data
title_short Algorithm for calculating hazard areas of a rock massif based on geomechanical data
title_sort algorithm for calculating hazard areas of a rock massif based on geomechanical data
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/55/e3sconf_ghcrrm2019_01002.pdf
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AT tereshkinandrei algorithmforcalculatinghazardareasofarockmassifbasedongeomechanicaldata