Comprehensive technical support for safe mining in ultra-close coal seams: A case study

In order to mine the coal seam under super-thick hard roof, improve the utilization rate of resources and prolong the remaining service life of the mine, a case study of the Gaozhuang Coal Mine in the Zaozhuang Mining Area has been performed in this paper. Based on the specific mining geological con...

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Main Authors: Wei Zhang, Jiawei Guo, Kaidi Xie, Jinming Wang, Liang Chen, Wenmin Hu, Jiaxing Xu
Format: Article
Language:English
Published: SAGE Publishing 2021-07-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/01445987211009390
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spelling doaj-62692e5905aa4ff88ade24673f1bf6dc2021-07-08T22:33:54ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542021-07-013910.1177/01445987211009390Comprehensive technical support for safe mining in ultra-close coal seams: A case studyWei ZhangJiawei GuoKaidi XieJinming WangLiang ChenWenmin HuJiaxing XuIn order to mine the coal seam under super-thick hard roof, improve the utilization rate of resources and prolong the remaining service life of the mine, a case study of the Gaozhuang Coal Mine in the Zaozhuang Mining Area has been performed in this paper. Based on the specific mining geological conditions of ultra-close coal seams (#3 up and #3 low coal seams), their joint systematic analysis has been performed, with the focus made in the following three aspects: (i) prevention of rock burst under super-thick hard roof, (ii) deformation control of surrounding rock of roadways in the lower coal seam, and (iii) fire prevention in the goaf of working face. Given the strong bursting tendency observed in upper coal seam and lower coal seam, the technology of preventing rock burst under super-thick hard roof was proposed, which involved setting of narrow section coal pillars to protect roadways and interleaving layout of working faces. The specific supporting scheme of surrounding rock of roadways in the #3 low 1101 working face was determined, and the grouting reinforcement method of local fractured zones through Marithan was further proposed, to ensure the deformation control of surrounding rock of roadways in lower coal seams. The proposed fire prevention technology envisaged goaf grouting and spraying to plug leaks, which reduced the hazard of spontaneous combustion of residual coals in mined ultra-close coal seams. The technical and economic improvements with a direct economic benefit of 5.55 million yuan were achieved by the application of the proposed comprehensive technical support. The research results obtained provide a theoretical guidance and technical support of safe mining strategies of close coal seams in other mining areas.https://doi.org/10.1177/01445987211009390
collection DOAJ
language English
format Article
sources DOAJ
author Wei Zhang
Jiawei Guo
Kaidi Xie
Jinming Wang
Liang Chen
Wenmin Hu
Jiaxing Xu
spellingShingle Wei Zhang
Jiawei Guo
Kaidi Xie
Jinming Wang
Liang Chen
Wenmin Hu
Jiaxing Xu
Comprehensive technical support for safe mining in ultra-close coal seams: A case study
Energy Exploration & Exploitation
author_facet Wei Zhang
Jiawei Guo
Kaidi Xie
Jinming Wang
Liang Chen
Wenmin Hu
Jiaxing Xu
author_sort Wei Zhang
title Comprehensive technical support for safe mining in ultra-close coal seams: A case study
title_short Comprehensive technical support for safe mining in ultra-close coal seams: A case study
title_full Comprehensive technical support for safe mining in ultra-close coal seams: A case study
title_fullStr Comprehensive technical support for safe mining in ultra-close coal seams: A case study
title_full_unstemmed Comprehensive technical support for safe mining in ultra-close coal seams: A case study
title_sort comprehensive technical support for safe mining in ultra-close coal seams: a case study
publisher SAGE Publishing
series Energy Exploration & Exploitation
issn 0144-5987
2048-4054
publishDate 2021-07-01
description In order to mine the coal seam under super-thick hard roof, improve the utilization rate of resources and prolong the remaining service life of the mine, a case study of the Gaozhuang Coal Mine in the Zaozhuang Mining Area has been performed in this paper. Based on the specific mining geological conditions of ultra-close coal seams (#3 up and #3 low coal seams), their joint systematic analysis has been performed, with the focus made in the following three aspects: (i) prevention of rock burst under super-thick hard roof, (ii) deformation control of surrounding rock of roadways in the lower coal seam, and (iii) fire prevention in the goaf of working face. Given the strong bursting tendency observed in upper coal seam and lower coal seam, the technology of preventing rock burst under super-thick hard roof was proposed, which involved setting of narrow section coal pillars to protect roadways and interleaving layout of working faces. The specific supporting scheme of surrounding rock of roadways in the #3 low 1101 working face was determined, and the grouting reinforcement method of local fractured zones through Marithan was further proposed, to ensure the deformation control of surrounding rock of roadways in lower coal seams. The proposed fire prevention technology envisaged goaf grouting and spraying to plug leaks, which reduced the hazard of spontaneous combustion of residual coals in mined ultra-close coal seams. The technical and economic improvements with a direct economic benefit of 5.55 million yuan were achieved by the application of the proposed comprehensive technical support. The research results obtained provide a theoretical guidance and technical support of safe mining strategies of close coal seams in other mining areas.
url https://doi.org/10.1177/01445987211009390
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