Mathematical modeling of seismic explosion waves impact on rock mass with a working

In the article, within the framework of the dynamic theory of elasticity, a mathematical model of the impact of seismic blast waves on rock mass is presented, including a working. The increase in the volume of mining operations in complex mining and geological conditions, taking into account the inf...

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Main Authors: А. П. Господариков, Я. Н. Выходцев, М. А. Зацепин
Format: Article
Language:English
Published: Saint-Petersburg Mining University 2017-08-01
Series:Zapiski Gornogo Instituta
Subjects:
Online Access:http://pmi.spmi.ru/index.php/pmi/article/view/6338
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spelling doaj-74fff0112dee4b9393dc3ea2c002bbd22020-11-25T00:22:44ZengSaint-Petersburg Mining UniversityZapiski Gornogo Instituta2411-33362541-94042017-08-01226410.25515/pmi.2017.4.4056285Mathematical modeling of seismic explosion waves impact on rock mass with a workingА. П. Господариков0Я. Н. Выходцев1М. А. Зацепин2Saint-Petersburg Mining UniversitySaint-Petersburg Mining UniversitySaint-Petersburg Mining UniversityIn the article, within the framework of the dynamic theory of elasticity, a mathematical model of the impact of seismic blast waves on rock mass is presented, including a working. The increase in the volume of mining operations in complex mining and geological conditions, taking into account the influence of the explosion energy, is closely connected with the analysis of the main parameters of the stress-strain state of the rock massif including a working. The latter leads to the need to determine the safe parameters of drilling and blasting operations that ensure the operational state of mining. The main danger in detonation of an explosive charge near an active working is a seismic explosive wave which characteristics are determined by the properties of soil and parameters of drilling and blasting operations. The determination of stress fields and displacement velocities in rock mass requires the use of a modern mathematical apparatus for its solution. For numerical solution of the given boundary value problem by the method of finite differences, an original calculation-difference scheme is constructed. The application of the splitting method for solving a two-dimensional boundary value problem is reduced to the solution of spatially one-dimensional differential equations. For the obtained numerical algorithm, an effective computational software has been developed. Numerical solutions of the model problem are given for the case when the shape of the working has a form of an ellipse.http://pmi.spmi.ru/index.php/pmi/article/view/6338mine workingmathematical modelseismic explosion wavedifference schemenumerical algorithm
collection DOAJ
language English
format Article
sources DOAJ
author А. П. Господариков
Я. Н. Выходцев
М. А. Зацепин
spellingShingle А. П. Господариков
Я. Н. Выходцев
М. А. Зацепин
Mathematical modeling of seismic explosion waves impact on rock mass with a working
Zapiski Gornogo Instituta
mine working
mathematical model
seismic explosion wave
difference scheme
numerical algorithm
author_facet А. П. Господариков
Я. Н. Выходцев
М. А. Зацепин
author_sort А. П. Господариков
title Mathematical modeling of seismic explosion waves impact on rock mass with a working
title_short Mathematical modeling of seismic explosion waves impact on rock mass with a working
title_full Mathematical modeling of seismic explosion waves impact on rock mass with a working
title_fullStr Mathematical modeling of seismic explosion waves impact on rock mass with a working
title_full_unstemmed Mathematical modeling of seismic explosion waves impact on rock mass with a working
title_sort mathematical modeling of seismic explosion waves impact on rock mass with a working
publisher Saint-Petersburg Mining University
series Zapiski Gornogo Instituta
issn 2411-3336
2541-9404
publishDate 2017-08-01
description In the article, within the framework of the dynamic theory of elasticity, a mathematical model of the impact of seismic blast waves on rock mass is presented, including a working. The increase in the volume of mining operations in complex mining and geological conditions, taking into account the influence of the explosion energy, is closely connected with the analysis of the main parameters of the stress-strain state of the rock massif including a working. The latter leads to the need to determine the safe parameters of drilling and blasting operations that ensure the operational state of mining. The main danger in detonation of an explosive charge near an active working is a seismic explosive wave which characteristics are determined by the properties of soil and parameters of drilling and blasting operations. The determination of stress fields and displacement velocities in rock mass requires the use of a modern mathematical apparatus for its solution. For numerical solution of the given boundary value problem by the method of finite differences, an original calculation-difference scheme is constructed. The application of the splitting method for solving a two-dimensional boundary value problem is reduced to the solution of spatially one-dimensional differential equations. For the obtained numerical algorithm, an effective computational software has been developed. Numerical solutions of the model problem are given for the case when the shape of the working has a form of an ellipse.
topic mine working
mathematical model
seismic explosion wave
difference scheme
numerical algorithm
url http://pmi.spmi.ru/index.php/pmi/article/view/6338
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