Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure
Concerning the issue of mine pressure behaviors occurred in fully mechanized caving mining of thick coal seams beneath hard stratum in Datong Mining Area, combined with thin and thick plate theory, the paper utilizes theoretical analysis, similar experiments, numerical simulations and field tests to...
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doaj-1a8a863329c4418d83bf456e5545bf6b2020-11-24T21:14:27ZengElsevierInternational Journal of Mining Science and Technology2095-26862017-11-01276965972Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressureBinwei Xia0Jinlong Jia1Bin Yu2Xuan Zhang3Xiaolong Li4State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, China; Datong Coal Mine Group Co. Ltd., Datong 037003, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, ChinaDatong Coal Mine Group Co. Ltd., Datong 037003, China; Corresponding author.State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, ChinaConcerning the issue of mine pressure behaviors occurred in fully mechanized caving mining of thick coal seams beneath hard stratum in Datong Mining Area, combined with thin and thick plate theory, the paper utilizes theoretical analysis, similar experiments, numerical simulations and field tests to study the influence of remaining coal pillars in Jurassic system goaf on hard stratum fractures, as well as mine pressure behaviors under their coupling effects. The paper concludes the solution formula of initial fault displacement in hard stratum caused by remaining coal pillars. Experiments prove that coupling effects can enhance mine pressure behaviors on working faces. When inter-layer inferior key strata fractures, mine pressure phenomenon such as significant roof weighting steps and increasing resistance in support. When inter-layer superior key strata fractures, the scope of overlying strata extends to Jurassic system goaf, dual-system stopes cut through, and remaining coal pillars lose stability. As a result, the bottom inferior key strata also lose stability. It causes huge impacts on working face, and the second mine pressure behaviors. These phenomena provide evidence for research on other similar mine strata pressure behaviors occurred in dual-system mines with remaining coal pillars. Keywords: Dual system caving, Coal pillar, Hard rock, Broken instability, Mining pressure revealhttp://www.sciencedirect.com/science/article/pii/S2095268617305165 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Binwei Xia Jinlong Jia Bin Yu Xuan Zhang Xiaolong Li |
spellingShingle |
Binwei Xia Jinlong Jia Bin Yu Xuan Zhang Xiaolong Li Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure International Journal of Mining Science and Technology |
author_facet |
Binwei Xia Jinlong Jia Bin Yu Xuan Zhang Xiaolong Li |
author_sort |
Binwei Xia |
title |
Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
title_short |
Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
title_full |
Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
title_fullStr |
Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
title_full_unstemmed |
Coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
title_sort |
coupling effects of coal pillars of thick coal seams in large-space stopes and hard stratum on mine pressure |
publisher |
Elsevier |
series |
International Journal of Mining Science and Technology |
issn |
2095-2686 |
publishDate |
2017-11-01 |
description |
Concerning the issue of mine pressure behaviors occurred in fully mechanized caving mining of thick coal seams beneath hard stratum in Datong Mining Area, combined with thin and thick plate theory, the paper utilizes theoretical analysis, similar experiments, numerical simulations and field tests to study the influence of remaining coal pillars in Jurassic system goaf on hard stratum fractures, as well as mine pressure behaviors under their coupling effects. The paper concludes the solution formula of initial fault displacement in hard stratum caused by remaining coal pillars. Experiments prove that coupling effects can enhance mine pressure behaviors on working faces. When inter-layer inferior key strata fractures, mine pressure phenomenon such as significant roof weighting steps and increasing resistance in support. When inter-layer superior key strata fractures, the scope of overlying strata extends to Jurassic system goaf, dual-system stopes cut through, and remaining coal pillars lose stability. As a result, the bottom inferior key strata also lose stability. It causes huge impacts on working face, and the second mine pressure behaviors. These phenomena provide evidence for research on other similar mine strata pressure behaviors occurred in dual-system mines with remaining coal pillars. Keywords: Dual system caving, Coal pillar, Hard rock, Broken instability, Mining pressure reveal |
url |
http://www.sciencedirect.com/science/article/pii/S2095268617305165 |
work_keys_str_mv |
AT binweixia couplingeffectsofcoalpillarsofthickcoalseamsinlargespacestopesandhardstratumonminepressure AT jinlongjia couplingeffectsofcoalpillarsofthickcoalseamsinlargespacestopesandhardstratumonminepressure AT binyu couplingeffectsofcoalpillarsofthickcoalseamsinlargespacestopesandhardstratumonminepressure AT xuanzhang couplingeffectsofcoalpillarsofthickcoalseamsinlargespacestopesandhardstratumonminepressure AT xiaolongli couplingeffectsofcoalpillarsofthickcoalseamsinlargespacestopesandhardstratumonminepressure |
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