Identification of zones of influence of exogenous fire damaging factors

In this work, topological configuration of dangerous zone in the mine ventilation network and concentrations of fire gases in it are estimated and identified at vent impacting on the emergency conditions. The obtained information on gas-dynamic state of the mine ventilation network at a current mome...

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Main Authors: Kokoulin Ivan, Bunko Tetiana, Yashchenko Ihor, Papirnyk Ruslan, Belikov Anatolii, Myroshnychenko Vadym, Otchenashev Oleksandr
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/28/e3sconf_rmget2020_00049.pdf
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spelling doaj-ca3e0b6ac1bd433e9127ed25e671d6182021-04-02T12:53:36ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011680004910.1051/e3sconf/202016800049e3sconf_rmget2020_00049Identification of zones of influence of exogenous fire damaging factorsKokoulin Ivan0Bunko Tetiana1Yashchenko Ihor2Papirnyk Ruslan3Belikov Anatolii4Myroshnychenko Vadym5Otchenashev Oleksandr6Institute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences of UkraineInstitute of Geotechnical Mechanics named by N. Poljakov of National Academy of Sciences of UkraineMinistry of Power Engineering and Coal Industry of UkrainePrydniprovsk State Academy of Civil Engineering and ArchitecturePrydniprovsk State Academy of Civil Engineering and ArchitectureLimited Liability Company “DTEK”InterNations GmbHIn this work, topological configuration of dangerous zone in the mine ventilation network and concentrations of fire gases in it are estimated and identified at vent impacting on the emergency conditions. The obtained information on gas-dynamic state of the mine ventilation network at a current moment of time is used for undertaking primary measures according to the plan of accident response: emergency evacuation of people and actions of militarized mine-rescue services for eliminating emergency at its initial stage with taking into account changed emergency ventilation mode. The proposed method allows identifying an area in the mine contaminated by combustion products with taking into account time of its formation, changes in ventilation mode during the accident and possible air stream reversal in zones with descentional ventilation under the influence of the fire source depression and formation of zones with fire gas recirculation. With implementation of this method, it becomes possible to improve accuracy of detecting gassy zones in the ventilation network and effectiveness of emergency response.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/28/e3sconf_rmget2020_00049.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Kokoulin Ivan
Bunko Tetiana
Yashchenko Ihor
Papirnyk Ruslan
Belikov Anatolii
Myroshnychenko Vadym
Otchenashev Oleksandr
spellingShingle Kokoulin Ivan
Bunko Tetiana
Yashchenko Ihor
Papirnyk Ruslan
Belikov Anatolii
Myroshnychenko Vadym
Otchenashev Oleksandr
Identification of zones of influence of exogenous fire damaging factors
E3S Web of Conferences
author_facet Kokoulin Ivan
Bunko Tetiana
Yashchenko Ihor
Papirnyk Ruslan
Belikov Anatolii
Myroshnychenko Vadym
Otchenashev Oleksandr
author_sort Kokoulin Ivan
title Identification of zones of influence of exogenous fire damaging factors
title_short Identification of zones of influence of exogenous fire damaging factors
title_full Identification of zones of influence of exogenous fire damaging factors
title_fullStr Identification of zones of influence of exogenous fire damaging factors
title_full_unstemmed Identification of zones of influence of exogenous fire damaging factors
title_sort identification of zones of influence of exogenous fire damaging factors
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description In this work, topological configuration of dangerous zone in the mine ventilation network and concentrations of fire gases in it are estimated and identified at vent impacting on the emergency conditions. The obtained information on gas-dynamic state of the mine ventilation network at a current moment of time is used for undertaking primary measures according to the plan of accident response: emergency evacuation of people and actions of militarized mine-rescue services for eliminating emergency at its initial stage with taking into account changed emergency ventilation mode. The proposed method allows identifying an area in the mine contaminated by combustion products with taking into account time of its formation, changes in ventilation mode during the accident and possible air stream reversal in zones with descentional ventilation under the influence of the fire source depression and formation of zones with fire gas recirculation. With implementation of this method, it becomes possible to improve accuracy of detecting gassy zones in the ventilation network and effectiveness of emergency response.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/28/e3sconf_rmget2020_00049.pdf
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