Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions

Abstract Coal and gas outburst is a complex dynamic disaster during coal underground mining. Revealing the disaster mechanism is of great significance for accurate prediction and prevention of coal and gas outburst. The geo-dynamic system of coal and gas outburst is proposed. The framework of geo-dy...

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Published in:International Journal of Coal Science & Technology
Main Authors: Lingjin Xu, Chaojun Fan, Mingkun Luo, Sheng Li, Jun Han, Xiang Fu, Bin Xiao
Format: Article
Language:English
Published: SpringerOpen 2023-11-01
Subjects:
Online Access:https://doi.org/10.1007/s40789-023-00651-z
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author Lingjin Xu
Chaojun Fan
Mingkun Luo
Sheng Li
Jun Han
Xiang Fu
Bin Xiao
author_facet Lingjin Xu
Chaojun Fan
Mingkun Luo
Sheng Li
Jun Han
Xiang Fu
Bin Xiao
author_sort Lingjin Xu
collection DOAJ
container_title International Journal of Coal Science & Technology
description Abstract Coal and gas outburst is a complex dynamic disaster during coal underground mining. Revealing the disaster mechanism is of great significance for accurate prediction and prevention of coal and gas outburst. The geo-dynamic system of coal and gas outburst is proposed. The framework of geo-dynamic system is composed of gassy coal mass, geological dynamic environment and mining disturbance. Equations of stress–damage–seepage interaction for gassy coal mass is constructed to resolve the outburst elimination process by gas extraction with boreholes through layer in floor roadway. The results show the occurrence of outburst is divided into the evolution process of gestation, formation, development and termination of geo-dynamic system. The scale range of outburst occurrence is determined, which provides a spatial basis for the prevention and control of outburst. The formation criterion and instability criterion of coal and gas outburst are established. The formation criterion F 1 is defined as the scale of the geo-dynamic system, and the instability criterion F 2 is defined as the scale of the outburst geo-body. According to the geo-dynamic system, the elimination mechanism of coal and gas outburst—‘unloading + depressurization’ is established, and the gas extraction by boreholes through layer in floor roadway for outburst elimination is given. For the research case, when the gas extraction is 120 days, the gas pressure of the coal seam is reduced to below 0.4 MPa, and the outburst danger is eliminated effectively.
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spelling doaj-art-0ee09b7d8b7d4e3ca458cdb3cc5f5edf2025-08-19T22:52:32ZengSpringerOpenInternational Journal of Coal Science & Technology2095-82932198-78232023-11-0110111510.1007/s40789-023-00651-zElimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactionsLingjin Xu0Chaojun Fan1Mingkun Luo2Sheng Li3Jun Han4Xiang Fu5Bin Xiao6College of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityEnergy Business Department, Shanxi Lu’an Chemical GroupResource Department, Liaoning Geology Engineering Vocational CollegeCollege of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityAbstract Coal and gas outburst is a complex dynamic disaster during coal underground mining. Revealing the disaster mechanism is of great significance for accurate prediction and prevention of coal and gas outburst. The geo-dynamic system of coal and gas outburst is proposed. The framework of geo-dynamic system is composed of gassy coal mass, geological dynamic environment and mining disturbance. Equations of stress–damage–seepage interaction for gassy coal mass is constructed to resolve the outburst elimination process by gas extraction with boreholes through layer in floor roadway. The results show the occurrence of outburst is divided into the evolution process of gestation, formation, development and termination of geo-dynamic system. The scale range of outburst occurrence is determined, which provides a spatial basis for the prevention and control of outburst. The formation criterion and instability criterion of coal and gas outburst are established. The formation criterion F 1 is defined as the scale of the geo-dynamic system, and the instability criterion F 2 is defined as the scale of the outburst geo-body. According to the geo-dynamic system, the elimination mechanism of coal and gas outburst—‘unloading + depressurization’ is established, and the gas extraction by boreholes through layer in floor roadway for outburst elimination is given. For the research case, when the gas extraction is 120 days, the gas pressure of the coal seam is reduced to below 0.4 MPa, and the outburst danger is eliminated effectively.https://doi.org/10.1007/s40789-023-00651-zCoal and gas outburstGeo-dynamic systemStress–damage–seepage couplingElimination mechanismInstability criterionGas extraction
spellingShingle Lingjin Xu
Chaojun Fan
Mingkun Luo
Sheng Li
Jun Han
Xiang Fu
Bin Xiao
Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
Coal and gas outburst
Geo-dynamic system
Stress–damage–seepage coupling
Elimination mechanism
Instability criterion
Gas extraction
title Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
title_full Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
title_fullStr Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
title_full_unstemmed Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
title_short Elimination mechanism of coal and gas outburst based on geo-dynamic system with stress–damage–seepage interactions
title_sort elimination mechanism of coal and gas outburst based on geo dynamic system with stress damage seepage interactions
topic Coal and gas outburst
Geo-dynamic system
Stress–damage–seepage coupling
Elimination mechanism
Instability criterion
Gas extraction
url https://doi.org/10.1007/s40789-023-00651-z
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