Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst

In deep mines, a reasonable design of the widths of isolated coal pillars (ICPs) is critically important, particularly for hard-strata mines. This is because the frequent occurrence of mine seismicity (MS) and rockburst in deep mines often arises from the inappropriate widths of the remnant ICPs. To...

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Main Authors: Bo Wang, Sitao Zhu, Fuxing Jiang, Jinhai Liu, Xiaoguang Shang, Xiufeng Zhang
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/17/4293
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spelling doaj-6c576938b7a642da9c9a8e1076e703b82020-11-25T03:54:00ZengMDPI AGEnergies1996-10732020-08-01134293429310.3390/en13174293Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and RockburstBo Wang0Sitao Zhu1Fuxing Jiang2Jinhai Liu3Xiaoguang Shang4Xiufeng Zhang5School of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaHebei State Key Laboratory of Mine Disaster Prevention, North China Institute of Science and Technology, Beijing 101601, ChinaSchool of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaShandong Energy Group Company Limited, Jinan 250014, ChinaIn deep mines, a reasonable design of the widths of isolated coal pillars (ICPs) is critically important, particularly for hard-strata mines. This is because the frequent occurrence of mine seismicity (MS) and rockburst in deep mines often arises from the inappropriate widths of the remnant ICPs. To address this problem, this paper takes the ICP of Yingpanhao Coal Mine in Inner Mongolia in China as the engineering case study and then presents a mechanical model to illuminate the occurrence mechanism of MS induced by the mining on both sides of ICPs. The results indicate that, after the mining on both sides of ICPs, the ICPs will produce a vertical compressive deformation, and the overlying high main key stratum (MKS) will experience a flexure deformation. When the limited deflection of MKS is less than the compression of ICPs, the MKS will be fractured, and the released energy may lead to MS. Based on the mechanism model, a design criterion is proposed for ICP widths; this criterion can effectively reduce the risk of the induced rockburst and MS. Then the occurrence mechanism of MS and the design basis for ICP width are verified by numerical simulation and field microseismic monitoring. The results in this paper may be used as a theoretical guidance for rational ICP design in deep mines and may help mitigate the risk of rockburst and MS from early mining stages.https://www.mdpi.com/1996-1073/13/17/4293isolated coal pillarmine seismicityrockburstmicroseismic monitoringlimited deflectioncompression
collection DOAJ
language English
format Article
sources DOAJ
author Bo Wang
Sitao Zhu
Fuxing Jiang
Jinhai Liu
Xiaoguang Shang
Xiufeng Zhang
spellingShingle Bo Wang
Sitao Zhu
Fuxing Jiang
Jinhai Liu
Xiaoguang Shang
Xiufeng Zhang
Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
Energies
isolated coal pillar
mine seismicity
rockburst
microseismic monitoring
limited deflection
compression
author_facet Bo Wang
Sitao Zhu
Fuxing Jiang
Jinhai Liu
Xiaoguang Shang
Xiufeng Zhang
author_sort Bo Wang
title Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
title_short Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
title_full Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
title_fullStr Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
title_full_unstemmed Investigating the Width of Isolated Coal Pillars in Deep Hard-Strata Mines for Prevention of Mine Seismicity and Rockburst
title_sort investigating the width of isolated coal pillars in deep hard-strata mines for prevention of mine seismicity and rockburst
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-08-01
description In deep mines, a reasonable design of the widths of isolated coal pillars (ICPs) is critically important, particularly for hard-strata mines. This is because the frequent occurrence of mine seismicity (MS) and rockburst in deep mines often arises from the inappropriate widths of the remnant ICPs. To address this problem, this paper takes the ICP of Yingpanhao Coal Mine in Inner Mongolia in China as the engineering case study and then presents a mechanical model to illuminate the occurrence mechanism of MS induced by the mining on both sides of ICPs. The results indicate that, after the mining on both sides of ICPs, the ICPs will produce a vertical compressive deformation, and the overlying high main key stratum (MKS) will experience a flexure deformation. When the limited deflection of MKS is less than the compression of ICPs, the MKS will be fractured, and the released energy may lead to MS. Based on the mechanism model, a design criterion is proposed for ICP widths; this criterion can effectively reduce the risk of the induced rockburst and MS. Then the occurrence mechanism of MS and the design basis for ICP width are verified by numerical simulation and field microseismic monitoring. The results in this paper may be used as a theoretical guidance for rational ICP design in deep mines and may help mitigate the risk of rockburst and MS from early mining stages.
topic isolated coal pillar
mine seismicity
rockburst
microseismic monitoring
limited deflection
compression
url https://www.mdpi.com/1996-1073/13/17/4293
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