RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD

The relevance of the study is specified by the necessity not only to identify the surface distribution of cracks, but also the degree of vegetation of the rock when evaluating the fracture of the main rocks as applied to the facing stone deposits. In modern practice, when developing deposits, the ro...

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Main Authors: Sergey M. Daniliev, Natalya A. Danilieva, Ekaterina P. Isakova, George K. Ashkar
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2020-09-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/2816/2310
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author Sergey M. Daniliev
Natalya A. Danilieva
Ekaterina P. Isakova
George K. Ashkar
author_facet Sergey M. Daniliev
Natalya A. Danilieva
Ekaterina P. Isakova
George K. Ashkar
author_sort Sergey M. Daniliev
collection DOAJ
description The relevance of the study is specified by the necessity not only to identify the surface distribution of cracks, but also the degree of vegetation of the rock when evaluating the fracture of the main rocks as applied to the facing stone deposits. In modern practice, when developing deposits, the rock with various types of distributed cracks can be detected. The further development of deposits of facing or building stone depends on the correct and rational solution to this problem. The solution to the problems of localization of the distributed propagation of cracks can be based on the attraction of modern technologies and introduction of engineering geophysicists into practice, allowing research based on the study of spatially oriented cracks in the rock mass. Analytical studies and experimental observations in natural conditions make it possible to preliminarily differentiate area of study by degree of demolition geological material mass, as well as to make a qualitative assessment of block raw materials. The main aim of the research is to selection of the optimal complex of geophysical methods for studing the propagation and localization of fractures in a rock mass. Methods: GPR studies using OKO-2 equipment with 150 MHz and 1200 MHz antennas. Results. Based on the study, the authors have proposed to use two types of antennas for penetrating to different depths. The general characteristic of the block stone deposit is obtained, the study area is allocated according to the degree of fracture. The presented methods reflect the effectiveness of the study of fracturing in a facing stone deposit using georadar.
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spelling doaj.art-53b511b0f23440beae2f548f9708e8962022-12-21T22:02:39ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302020-09-01331914014510.18799/24131830/2020/9/2816RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHODSergey M. Daniliev0Natalya A. Danilieva1Ekaterina P. Isakova2George K. Ashkar3St. Petersburg Mining UniversitySt. Petersburg Mining UniversitySt. Petersburg Mining UniversityHeriot-Watt Reservoir Evaluation and Management Training CenterThe relevance of the study is specified by the necessity not only to identify the surface distribution of cracks, but also the degree of vegetation of the rock when evaluating the fracture of the main rocks as applied to the facing stone deposits. In modern practice, when developing deposits, the rock with various types of distributed cracks can be detected. The further development of deposits of facing or building stone depends on the correct and rational solution to this problem. The solution to the problems of localization of the distributed propagation of cracks can be based on the attraction of modern technologies and introduction of engineering geophysicists into practice, allowing research based on the study of spatially oriented cracks in the rock mass. Analytical studies and experimental observations in natural conditions make it possible to preliminarily differentiate area of study by degree of demolition geological material mass, as well as to make a qualitative assessment of block raw materials. The main aim of the research is to selection of the optimal complex of geophysical methods for studing the propagation and localization of fractures in a rock mass. Methods: GPR studies using OKO-2 equipment with 150 MHz and 1200 MHz antennas. Results. Based on the study, the authors have proposed to use two types of antennas for penetrating to different depths. The general characteristic of the block stone deposit is obtained, the study area is allocated according to the degree of fracture. The presented methods reflect the effectiveness of the study of fracturing in a facing stone deposit using georadar.http://izvestiya.tpu.ru/archive/article/view/2816/2310granite massiffracturinggpr studies of rockgprfracturing of a facing stone
spellingShingle Sergey M. Daniliev
Natalya A. Danilieva
Ekaterina P. Isakova
George K. Ashkar
RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
Известия Томского политехнического университета: Инжиниринг георесурсов
granite massif
fracturing
gpr studies of rock
gpr
fracturing of a facing stone
title RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
title_full RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
title_fullStr RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
title_full_unstemmed RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
title_short RESEARCH OF CRACKING AT FACING STONE DEPOSIT USING THE GEORADAR METHOD
title_sort research of cracking at facing stone deposit using the georadar method
topic granite massif
fracturing
gpr studies of rock
gpr
fracturing of a facing stone
url http://izvestiya.tpu.ru/archive/article/view/2816/2310
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AT natalyaadanilieva researchofcrackingatfacingstonedepositusingthegeoradarmethod
AT ekaterinapisakova researchofcrackingatfacingstonedepositusingthegeoradarmethod
AT georgekashkar researchofcrackingatfacingstonedepositusingthegeoradarmethod