Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas

The paper considers specific character of hydrogeological problems arising during the whole cycle of a mining enterprise operation; the most reliable their solutions are implemented in the context of numerical hydrodynamical models of mine fields. Basic approaches to schematize laminated carbonic fo...

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Main Authors: Zahrytsenko Alina, Podvigina Olena, Dereviahina Nataliia
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20186000034
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spelling doaj-7d27abda92c94712ad003de8fa2660322021-03-02T09:51:22ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01600003410.1051/e3sconf/20186000034e3sconf_usme2018_00034Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in DonbasZahrytsenko Alina0Podvigina Olena1Dereviahina Nataliia2National Mining University, Department of Hydrogeology and Engeenering GeologyNational Mining University, Department of Hydrogeology and Engeenering GeologyNational Mining University, Department of Hydrogeology and Engeenering GeologyThe paper considers specific character of hydrogeological problems arising during the whole cycle of a mining enterprise operation; the most reliable their solutions are implemented in the context of numerical hydrodynamical models of mine fields. Basic approaches to schematize laminated carbonic formation through simplification of natural rock mass permeability have been substantiated; prediction algorithm of its changes during temporal transformation has been developed. Numerous identification problems solving in the process of modeling mine fields has helped understand that water inflow amount cannot be correlated with the extension of mining area. Within the areas with roof caving, permeability of carbonic formation is a time variable which value increases 10 – 15 times in the context of rock displacement, halves after 5 –10 years and nears natural values after 15 –20 years. In the context of Western Donbas, the modularized schemes have been tested while solving problems concerning filtration control within mine fields and their surface influence areas with high confidence of hydrogeological forecasts.https://doi.org/10.1051/e3sconf/20186000034
collection DOAJ
language English
format Article
sources DOAJ
author Zahrytsenko Alina
Podvigina Olena
Dereviahina Nataliia
spellingShingle Zahrytsenko Alina
Podvigina Olena
Dereviahina Nataliia
Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
E3S Web of Conferences
author_facet Zahrytsenko Alina
Podvigina Olena
Dereviahina Nataliia
author_sort Zahrytsenko Alina
title Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
title_short Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
title_full Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
title_fullStr Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
title_full_unstemmed Scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in Donbas
title_sort scientific and methodological foundations to develop numerical hydrodynamical models of mine fields in donbas
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description The paper considers specific character of hydrogeological problems arising during the whole cycle of a mining enterprise operation; the most reliable their solutions are implemented in the context of numerical hydrodynamical models of mine fields. Basic approaches to schematize laminated carbonic formation through simplification of natural rock mass permeability have been substantiated; prediction algorithm of its changes during temporal transformation has been developed. Numerous identification problems solving in the process of modeling mine fields has helped understand that water inflow amount cannot be correlated with the extension of mining area. Within the areas with roof caving, permeability of carbonic formation is a time variable which value increases 10 – 15 times in the context of rock displacement, halves after 5 –10 years and nears natural values after 15 –20 years. In the context of Western Donbas, the modularized schemes have been tested while solving problems concerning filtration control within mine fields and their surface influence areas with high confidence of hydrogeological forecasts.
url https://doi.org/10.1051/e3sconf/20186000034
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AT dereviahinanataliia scientificandmethodologicalfoundationstodevelopnumericalhydrodynamicalmodelsofminefieldsindonbas
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