Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining

With mining technology and mechanization degree being improving, fully mechanized caving mining technology (FCM) has become a main method for thick coal seam extraction in China. However, roof-coal caving characteristics in turn restrict its recovery efficiency, especially for the coal seam with com...

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Main Authors: Yunpei Liang, Lei Li, Xuelong Li, Kequan Wang, Jinhua Chen, Zhongguang Sun, Xuelin Yang
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2019/6519213
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spelling doaj-f621262ce39b441a9a03dc67a3b76e662020-11-25T01:33:51ZengHindawi LimitedShock and Vibration1070-96221875-92032019-01-01201910.1155/2019/65192136519213Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving MiningYunpei Liang0Lei Li1Xuelong Li2Kequan Wang3Jinhua Chen4Zhongguang Sun5Xuelin Yang6State Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, ChinaNational Key Laboratory of Gas Disaster Detecting, Preventing and Emergency Controlling, Chongqing Research Institute of China Coal Technology and Engineering Group Crop., Chongqing 400037, ChinaNational Key Laboratory of Gas Disaster Detecting, Preventing and Emergency Controlling, Chongqing Research Institute of China Coal Technology and Engineering Group Crop., Chongqing 400037, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, ChinaState Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, ChinaWith mining technology and mechanization degree being improving, fully mechanized caving mining technology (FCM) has become a main method for thick coal seam extraction in China. However, roof-coal caving characteristics in turn restrict its recovery efficiency, especially for the coal seam with complicated structure (CCS), that is, the coal seam comprises hard or soft coal and gangue. In order to explore the key factors influencing the roof-coal caving and recovery characteristics, related research work has been conducted as follows: firstly, a mechanical model of CCS has been established, which indicates the strength of the coal and gangue will directly affect the roof-coal recovery. Meanwhile, based on the geological settings of Qinyuan coal mine, numerical simulation on roof-coal caving law under different thicknesses of hard or soft coal and gangue has been performed using UDEC software. The results show that the maximum principal stress will increase with the increase of mining depth, making the roof-coal to break easily. Furthermore, the range of the plastic zone of the top coal and the damage degree of the top coal increase with the increase of mining depth. Physical modeling results show that when an extraction-caving ratio is 1, the number of times the coal arch forms is 0.43 at every caving, up to a maximum of 3; the number of times coal arch forms with an extraction-caving ratio of 2 is 4.65 times larger than that with an extraction-caving ratio of 1. The probability of coal arch formation with an extraction-caving ratio of 3 is minimal, about 0.4, which is due to that the arch span is large and the curvature is small, so it is difficult to form a stable arch structure. According to the mechanical characteristics of roof-coal in Qinyuan coal mine, deep-hole blasting technique has been used to reduce the fragments of roof-coal crushed. The results show that this technique can effectively improve the recovery of roof-coal.http://dx.doi.org/10.1155/2019/6519213
collection DOAJ
language English
format Article
sources DOAJ
author Yunpei Liang
Lei Li
Xuelong Li
Kequan Wang
Jinhua Chen
Zhongguang Sun
Xuelin Yang
spellingShingle Yunpei Liang
Lei Li
Xuelong Li
Kequan Wang
Jinhua Chen
Zhongguang Sun
Xuelin Yang
Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
Shock and Vibration
author_facet Yunpei Liang
Lei Li
Xuelong Li
Kequan Wang
Jinhua Chen
Zhongguang Sun
Xuelin Yang
author_sort Yunpei Liang
title Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
title_short Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
title_full Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
title_fullStr Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
title_full_unstemmed Study on Roof-Coal Caving Characteristics with Complicated Structure by Fully Mechanized Caving Mining
title_sort study on roof-coal caving characteristics with complicated structure by fully mechanized caving mining
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2019-01-01
description With mining technology and mechanization degree being improving, fully mechanized caving mining technology (FCM) has become a main method for thick coal seam extraction in China. However, roof-coal caving characteristics in turn restrict its recovery efficiency, especially for the coal seam with complicated structure (CCS), that is, the coal seam comprises hard or soft coal and gangue. In order to explore the key factors influencing the roof-coal caving and recovery characteristics, related research work has been conducted as follows: firstly, a mechanical model of CCS has been established, which indicates the strength of the coal and gangue will directly affect the roof-coal recovery. Meanwhile, based on the geological settings of Qinyuan coal mine, numerical simulation on roof-coal caving law under different thicknesses of hard or soft coal and gangue has been performed using UDEC software. The results show that the maximum principal stress will increase with the increase of mining depth, making the roof-coal to break easily. Furthermore, the range of the plastic zone of the top coal and the damage degree of the top coal increase with the increase of mining depth. Physical modeling results show that when an extraction-caving ratio is 1, the number of times the coal arch forms is 0.43 at every caving, up to a maximum of 3; the number of times coal arch forms with an extraction-caving ratio of 2 is 4.65 times larger than that with an extraction-caving ratio of 1. The probability of coal arch formation with an extraction-caving ratio of 3 is minimal, about 0.4, which is due to that the arch span is large and the curvature is small, so it is difficult to form a stable arch structure. According to the mechanical characteristics of roof-coal in Qinyuan coal mine, deep-hole blasting technique has been used to reduce the fragments of roof-coal crushed. The results show that this technique can effectively improve the recovery of roof-coal.
url http://dx.doi.org/10.1155/2019/6519213
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