Using LaModel to analyze coal bumps

Coal bumps have long been a safety hazard in coal mines, and even after decades of research, the exact mechanics that cause coal bumps are still not well understood. Therefore, coal bumps are still difficult to predict and control. The LaModel program has a long history of being used to effectively...

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Main Authors: Keith A. Heasley, Ihsan Berk Tulu
Format: Article
Language:English
Published: Elsevier 2018-09-01
Series:International Journal of Mining Science and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2095268618304750
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spelling doaj-9301ee0c0b5e4fc19f32f933d1e11bfe2020-11-25T00:42:14ZengElsevierInternational Journal of Mining Science and Technology2095-26862018-09-01285729737Using LaModel to analyze coal bumpsKeith A. Heasley0Ihsan Berk Tulu1Corresponding author.; Department of Mining Engineering, West Virginia University, Morgantown 26505, WV, USADepartment of Mining Engineering, West Virginia University, Morgantown 26505, WV, USACoal bumps have long been a safety hazard in coal mines, and even after decades of research, the exact mechanics that cause coal bumps are still not well understood. Therefore, coal bumps are still difficult to predict and control. The LaModel program has a long history of being used to effectively analyze displacements and stresses in coal mines, and with the recent addition of energy release and local mine stiffness calculations, the LaModel program now has greatly increased capabilities for evaluating coal bump potential. This paper presents three recent case histories where coal stress, pillar safety factor, energy release rate and local mine stiffness calculations in LaModel were used to evaluate the pillar plan and cut sequencing that were associated with a number of bumps. The first case history is a longwall mine where a simple stress analysis was used to help determine the limiting depth for safely mining in bump-prone ground. The second case history is a room-and-pillar retreat mine where the LaModel analysis is used to help optimize the pillar extraction sequencing in order to minimize the frequent pillar line bumps. The third case history is the Crandall Canyon mine where an initial bump and then a massive pillar collapse/bump which killed 6 miners is extensively back-analyzed. In these case histories, the calculation tools in LaModel are ultimately shown to be very effective for analyzing various aspects of the bump problem, and in the conclusions, a number of critical insights into the practical calculation of mine failure and stability developed as a result of this research are presented. Keywords: Coal bump, Burst, Energy release rate, Local mine stiffness, LaModelhttp://www.sciencedirect.com/science/article/pii/S2095268618304750
collection DOAJ
language English
format Article
sources DOAJ
author Keith A. Heasley
Ihsan Berk Tulu
spellingShingle Keith A. Heasley
Ihsan Berk Tulu
Using LaModel to analyze coal bumps
International Journal of Mining Science and Technology
author_facet Keith A. Heasley
Ihsan Berk Tulu
author_sort Keith A. Heasley
title Using LaModel to analyze coal bumps
title_short Using LaModel to analyze coal bumps
title_full Using LaModel to analyze coal bumps
title_fullStr Using LaModel to analyze coal bumps
title_full_unstemmed Using LaModel to analyze coal bumps
title_sort using lamodel to analyze coal bumps
publisher Elsevier
series International Journal of Mining Science and Technology
issn 2095-2686
publishDate 2018-09-01
description Coal bumps have long been a safety hazard in coal mines, and even after decades of research, the exact mechanics that cause coal bumps are still not well understood. Therefore, coal bumps are still difficult to predict and control. The LaModel program has a long history of being used to effectively analyze displacements and stresses in coal mines, and with the recent addition of energy release and local mine stiffness calculations, the LaModel program now has greatly increased capabilities for evaluating coal bump potential. This paper presents three recent case histories where coal stress, pillar safety factor, energy release rate and local mine stiffness calculations in LaModel were used to evaluate the pillar plan and cut sequencing that were associated with a number of bumps. The first case history is a longwall mine where a simple stress analysis was used to help determine the limiting depth for safely mining in bump-prone ground. The second case history is a room-and-pillar retreat mine where the LaModel analysis is used to help optimize the pillar extraction sequencing in order to minimize the frequent pillar line bumps. The third case history is the Crandall Canyon mine where an initial bump and then a massive pillar collapse/bump which killed 6 miners is extensively back-analyzed. In these case histories, the calculation tools in LaModel are ultimately shown to be very effective for analyzing various aspects of the bump problem, and in the conclusions, a number of critical insights into the practical calculation of mine failure and stability developed as a result of this research are presented. Keywords: Coal bump, Burst, Energy release rate, Local mine stiffness, LaModel
url http://www.sciencedirect.com/science/article/pii/S2095268618304750
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