Extraction of the remnant coal pillar in regular and irregular shapes : a case study
With the increasing coal mining rate, many coal mines in China are facing the coal resource exhaustion problem. This paper presents a case study on extracting a coal pillar which was left in a longwall retreat mine, Wangzhuang mine, in China. The left coal pillars usually have boundaries of regular...
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sg-ntu-dr.10356-1395732020-05-20T06:26:35Z Extraction of the remnant coal pillar in regular and irregular shapes : a case study Chen, Yong Ma, Shuqi Cao, Qijia School of Civil and Environmental Engineering Engineering::Civil engineering Left Coal Pillar Longwall Retreat With the increasing coal mining rate, many coal mines in China are facing the coal resource exhaustion problem. This paper presents a case study on extracting a coal pillar which was left in a longwall retreat mine, Wangzhuang mine, in China. The left coal pillars usually have boundaries of regular and irregular shapes, which result in complex stress distributions within the coal pillar. It is of great importance to study the stress distributions and to determine the roadway layout prior to extracting the left coal pillar. This study numerically analyzes the stress distributions in the left coal pillar, based on which the roadway layout and support techniques are proposed. The roadway stability were well maintained throughout the mining process and the mining safety and productivity were ensured. The left coal pillar in Wangzhuang mine was successfully extracted. This case study would be helpful for extracting the left coal pillar in the longwall retreat mines. 2020-05-20T06:26:35Z 2020-05-20T06:26:35Z 2018 Journal Article Chen, Y., Ma, S., & Cao, Q. (2018). Extraction of the remnant coal pillar in regular and irregular shapes : a case study. Journal of Loss Prevention in the Process Industries, 55, 191-203. doi:10.1016/j.jlp.2018.06.012 0950-4230 https://hdl.handle.net/10356/139573 10.1016/j.jlp.2018.06.012 2-s2.0-85048966068 55 191 203 en Journal of Loss Prevention in the Process Industries © 2018 Elsevier Ltd. All rights reserved. |
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Engineering::Civil engineering Left Coal Pillar Longwall Retreat Chen, Yong Ma, Shuqi Cao, Qijia Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
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With the increasing coal mining rate, many coal mines in China are facing the coal resource exhaustion problem. This paper presents a case study on extracting a coal pillar which was left in a longwall retreat mine, Wangzhuang mine, in China. The left coal pillars usually have boundaries of regular and irregular shapes, which result in complex stress distributions within the coal pillar. It is of great importance to study the stress distributions and to determine the roadway layout prior to extracting the left coal pillar. This study numerically analyzes the stress distributions in the left coal pillar, based on which the roadway layout and support techniques are proposed. The roadway stability were well maintained throughout the mining process and the mining safety and productivity were ensured. The left coal pillar in Wangzhuang mine was successfully extracted. This case study would be helpful for extracting the left coal pillar in the longwall retreat mines. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Chen, Yong Ma, Shuqi Cao, Qijia |
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Article |
author |
Chen, Yong Ma, Shuqi Cao, Qijia |
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Chen, Yong |
title |
Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
title_short |
Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
title_full |
Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
title_fullStr |
Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
title_full_unstemmed |
Extraction of the remnant coal pillar in regular and irregular shapes : a case study |
title_sort |
extraction of the remnant coal pillar in regular and irregular shapes : a case study |
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2020 |
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https://hdl.handle.net/10356/139573 |
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1681058138564853760 |