The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams

In Poland, for underground hard coal seam extraction, the longwall method is used. Retreat longwalls with natural roof caving in the gob are the most common. Currently it is estimated that about a half of the hard coal output in Poland originates from seams located in areas of rock burst hazard. The...

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Main Authors: Lubosik Zbigniew, Rajwa Sylwester, Walentek Andrzej, Masny Wojciech, Wrana Aleksander
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2020/01/matecconf_sesam20_00081.pdf
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spelling doaj-e74662b28e4d4ec6a2aad2b36a41d2982021-08-05T13:49:09ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013050008110.1051/matecconf/202030500081matecconf_sesam20_00081The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seamsLubosik ZbigniewRajwa SylwesterWalentek AndrzejMasny WojciechWrana AleksanderIn Poland, for underground hard coal seam extraction, the longwall method is used. Retreat longwalls with natural roof caving in the gob are the most common. Currently it is estimated that about a half of the hard coal output in Poland originates from seams located in areas of rock burst hazard. The article shows information about 18 rock bursts, and 14 other seismic events which occurred between 2003 and 2012 in underground mines belonging to one of coal companies in Poland. In addition, negative consequences of those dynamic phenomena in the longwall workings are described. In the next part of paper, the most common types of damage to powered supports after the rock mass tremors and other dynamic phenomena in longwall workings are shown. In order to avoid damage of powered supports, in geo-mining conditions where dynamic phenomena occur, different types of protective means are applied. In the paper the methodology of assessing the powered support yield ability is described. At the end, an example of the assessed yield ability of a powered support in given geo-mining conditions of a longwall face affected by the seismic events is presented.https://www.matec-conferences.org/articles/matecconf/pdf/2020/01/matecconf_sesam20_00081.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Lubosik Zbigniew
Rajwa Sylwester
Walentek Andrzej
Masny Wojciech
Wrana Aleksander
spellingShingle Lubosik Zbigniew
Rajwa Sylwester
Walentek Andrzej
Masny Wojciech
Wrana Aleksander
The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
MATEC Web of Conferences
author_facet Lubosik Zbigniew
Rajwa Sylwester
Walentek Andrzej
Masny Wojciech
Wrana Aleksander
author_sort Lubosik Zbigniew
title The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
title_short The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
title_full The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
title_fullStr The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
title_full_unstemmed The role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
title_sort role of powered support in ensuring the proper longwall working cross-section area in rockburst-prone seams
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2020-01-01
description In Poland, for underground hard coal seam extraction, the longwall method is used. Retreat longwalls with natural roof caving in the gob are the most common. Currently it is estimated that about a half of the hard coal output in Poland originates from seams located in areas of rock burst hazard. The article shows information about 18 rock bursts, and 14 other seismic events which occurred between 2003 and 2012 in underground mines belonging to one of coal companies in Poland. In addition, negative consequences of those dynamic phenomena in the longwall workings are described. In the next part of paper, the most common types of damage to powered supports after the rock mass tremors and other dynamic phenomena in longwall workings are shown. In order to avoid damage of powered supports, in geo-mining conditions where dynamic phenomena occur, different types of protective means are applied. In the paper the methodology of assessing the powered support yield ability is described. At the end, an example of the assessed yield ability of a powered support in given geo-mining conditions of a longwall face affected by the seismic events is presented.
url https://www.matec-conferences.org/articles/matecconf/pdf/2020/01/matecconf_sesam20_00081.pdf
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