Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane

Ventilation hazard is the most dangerous phenomena occurring in the hard coal extraction process. This particularly applies to endogenous fire hazard. In order to reduce it, it is necessary to improve the effectiveness of preventive measures. Hence this paper presents new solutions that substantiall...

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Main Authors: Szurgacz Dawid, Sobik Leszek, Brodny Jarosław, Grigashkin Maxim
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/2020/34/e3sconf_iims2020_01066.pdf
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spelling doaj-8b201288045c4000a8a472e35db3a7e02021-04-02T15:52:28ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011740106610.1051/e3sconf/202017401066e3sconf_iims2020_01066Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methaneSzurgacz Dawid0Sobik Leszek1Brodny Jarosław2Grigashkin Maxim3Center of Hydraulics DOH LtdPolska Grupa Górnicza S.A., KWK ROW ruch ChwałowiceSilesian University of Technology, Faculty of Organization and ManagementNUST “MISiS”, Department of Energy and Energy Efficiency of the Mining IndustryVentilation hazard is the most dangerous phenomena occurring in the hard coal extraction process. This particularly applies to endogenous fire hazard. In order to reduce it, it is necessary to improve the effectiveness of preventive measures. Hence this paper presents new solutions that substantially improve fire prevention effectiveness. The main idea is to develop and create an additional nitrogen cushion in the zone behind the powered roof support operating in a longwall face. The solution is based on installations for inerting of goafs and sections of the powered roof support. The nitrogen cushion restricts the access of air and oxygen to the area of goafs and limits the possibility of fire. Practical application of the developed solution allowed for effective reduction of fire hazard in conditions of a very high tendency of coal to self-ignite at short incubation period. This, in turn, enables safe exploitation and decommissioning of the longwall. Undoubtedly, the solution presented and the results obtained constitute a new approach to preventive actions in mines. It is the result of the work of theoretical and practical researchers. The solution is a combination of the potential of these two environments. The developed solution should find wide range of applications in the areas where endogenous fire and methane hazards occur.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/34/e3sconf_iims2020_01066.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Szurgacz Dawid
Sobik Leszek
Brodny Jarosław
Grigashkin Maxim
spellingShingle Szurgacz Dawid
Sobik Leszek
Brodny Jarosław
Grigashkin Maxim
Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
E3S Web of Conferences
author_facet Szurgacz Dawid
Sobik Leszek
Brodny Jarosław
Grigashkin Maxim
author_sort Szurgacz Dawid
title Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
title_short Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
title_full Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
title_fullStr Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
title_full_unstemmed Preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
title_sort preliminary results of tests on nitrogen cushion for combating fire hazard in longwalls rich in methane
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description Ventilation hazard is the most dangerous phenomena occurring in the hard coal extraction process. This particularly applies to endogenous fire hazard. In order to reduce it, it is necessary to improve the effectiveness of preventive measures. Hence this paper presents new solutions that substantially improve fire prevention effectiveness. The main idea is to develop and create an additional nitrogen cushion in the zone behind the powered roof support operating in a longwall face. The solution is based on installations for inerting of goafs and sections of the powered roof support. The nitrogen cushion restricts the access of air and oxygen to the area of goafs and limits the possibility of fire. Practical application of the developed solution allowed for effective reduction of fire hazard in conditions of a very high tendency of coal to self-ignite at short incubation period. This, in turn, enables safe exploitation and decommissioning of the longwall. Undoubtedly, the solution presented and the results obtained constitute a new approach to preventive actions in mines. It is the result of the work of theoretical and practical researchers. The solution is a combination of the potential of these two environments. The developed solution should find wide range of applications in the areas where endogenous fire and methane hazards occur.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/34/e3sconf_iims2020_01066.pdf
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AT brodnyjarosław preliminaryresultsoftestsonnitrogencushionforcombatingfirehazardinlongwallsrichinmethane
AT grigashkinmaxim preliminaryresultsoftestsonnitrogencushionforcombatingfirehazardinlongwallsrichinmethane
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