Floor failure depth of upper coal seam during close coal seams mining and its novel detection method

The primary problem needed to be solved in mining close coal seams is to understand quantitatively the floor failure depth of the upper coal seam. In this study, according to the mining and geological conditions of close coal seams (#10 and #11 coal seams) in the Second Mining Zone of Caocun Coal Mi...

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Main Authors: Wei Zhang, Dongsheng Zhang, Dahong Qi, Wenmin Hu, Ziming He, Weisheng Zhang
Format: Article
Language:English
Published: SAGE Publishing 2018-09-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/0144598717747622
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spelling doaj-2649a7b57344486bb081101d17b53d222020-11-25T04:09:10ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542018-09-013610.1177/0144598717747622Floor failure depth of upper coal seam during close coal seams mining and its novel detection methodWei Zhang0Dongsheng Zhang1Dahong Qi2Wenmin Hu3Ziming He4Weisheng Zhang5IoT Perception Mine Research Center, National and Local Joint Engineering Laboratory of Internet Application Technology on Mine, China University of Mining and Technology, Xuzhou, ChinaState Key Laboratory of Coal Resources and Safe Mining, China University of Mining and Technology, Xuzhou, ChinaSchool of Mines, China University of Mining and Technology, Xuzhou, ChinaIoT Perception Mine Research Center, National and Local Joint Engineering Laboratory of Internet Application Technology on Mine, China University of Mining and Technology, Xuzhou, ChinaSchool of Mines, China University of Mining and Technology, Xuzhou, ChinaSchool of Mines, China University of Mining and Technology, Xuzhou, ChinaThe primary problem needed to be solved in mining close coal seams is to understand quantitatively the floor failure depth of the upper coal seam. In this study, according to the mining and geological conditions of close coal seams (#10 and #11 coal seams) in the Second Mining Zone of Caocun Coal Mine, the mechanical model of floor failure of the upper coal seam was built. Calculation results show that the advanced abutment pressure caused by the mining of the upper coal seam, resulted in the floor failure depth with a maximum of 26.1 m, which is 2.8 times of the distance between two coal seams. On this basis, the mechanical model of the remaining protective coal pillar was established and the stress distribution status under the remaining protective coal pillar in the 10# coal seam was then theoretically analysed. Analysis results show that stress distribution under the remaining protective coal pillar was significantly heterogeneous. It was also determined that the interior staggering distance should be at least 4.6 m to arrange the gateways of the #209 island coalface in the lower coal seam. Taken into account a certain safety coefficient (1.6–1.7), as well as reducing the loss of coal resources, the reasonable interior staggering distance was finally determined as 7.5 m. Finally, a novel method using radon was initially proposed to detect the floor failure depth of the upper coal seam in mining close coal seams, which could overcome deficiencies of current research methods.https://doi.org/10.1177/0144598717747622
collection DOAJ
language English
format Article
sources DOAJ
author Wei Zhang
Dongsheng Zhang
Dahong Qi
Wenmin Hu
Ziming He
Weisheng Zhang
spellingShingle Wei Zhang
Dongsheng Zhang
Dahong Qi
Wenmin Hu
Ziming He
Weisheng Zhang
Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
Energy Exploration & Exploitation
author_facet Wei Zhang
Dongsheng Zhang
Dahong Qi
Wenmin Hu
Ziming He
Weisheng Zhang
author_sort Wei Zhang
title Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
title_short Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
title_full Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
title_fullStr Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
title_full_unstemmed Floor failure depth of upper coal seam during close coal seams mining and its novel detection method
title_sort floor failure depth of upper coal seam during close coal seams mining and its novel detection method
publisher SAGE Publishing
series Energy Exploration & Exploitation
issn 0144-5987
2048-4054
publishDate 2018-09-01
description The primary problem needed to be solved in mining close coal seams is to understand quantitatively the floor failure depth of the upper coal seam. In this study, according to the mining and geological conditions of close coal seams (#10 and #11 coal seams) in the Second Mining Zone of Caocun Coal Mine, the mechanical model of floor failure of the upper coal seam was built. Calculation results show that the advanced abutment pressure caused by the mining of the upper coal seam, resulted in the floor failure depth with a maximum of 26.1 m, which is 2.8 times of the distance between two coal seams. On this basis, the mechanical model of the remaining protective coal pillar was established and the stress distribution status under the remaining protective coal pillar in the 10# coal seam was then theoretically analysed. Analysis results show that stress distribution under the remaining protective coal pillar was significantly heterogeneous. It was also determined that the interior staggering distance should be at least 4.6 m to arrange the gateways of the #209 island coalface in the lower coal seam. Taken into account a certain safety coefficient (1.6–1.7), as well as reducing the loss of coal resources, the reasonable interior staggering distance was finally determined as 7.5 m. Finally, a novel method using radon was initially proposed to detect the floor failure depth of the upper coal seam in mining close coal seams, which could overcome deficiencies of current research methods.
url https://doi.org/10.1177/0144598717747622
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