Characteristics of Mining-Induced Fractures Under Inclined Coal Seam Group Multiple Mining and Implications for Gas Migration
The accurate identification of gas migration channels and enrichment regions is essential for the utilization of gas resources and safe coal mine production, which are closely related to the evolution of mining-induced fractures. Therefore, we conducted a similarity simulation study of inclined coal...
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Published in | Natural resources research (New York, N.Y.) Vol. 32; no. 3; pp. 1481 - 1501 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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New York
Springer US
01.06.2023
Springer Nature B.V |
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Abstract | The accurate identification of gas migration channels and enrichment regions is essential for the utilization of gas resources and safe coal mine production, which are closely related to the evolution of mining-induced fractures. Therefore, we conducted a similarity simulation study of inclined coal seam group multiple mining, adopting the 1930 Coal Mine in Xinjiang, China, as the subject. First, the evolution of mining-induced fracture parameters was elucidated. Then, the gas migration and enrichment characteristics under inclined coal seam group multiple mining were investigated. Finally, a surface well gas extraction test was performed in the mining area to verify the experimental results. The results showed that under inclined coal seam group multiple mining, the frequency, angle and width of mining-induced fractures exhibited significant asymmetric characteristics. Additionally, the surface area percentage and fractal dimension of mining-induced fractures indicated a trend of an initial large increase followed by a small increase. Moreover, under inclined coal seam group multiple mining, mining-induced fractures were more developed in the right fracture area, and gas was smoothly transported, resulting in a more likely gas enrichment region. Based on the characteristics of mining-induced fracture parameters, a step-by-step method for determining gas migration channels and enrichment regions was proposed. Moreover, the surface well gas extraction test in the mining area revealed satisfactory extraction effects. This research aimed to increase the amount of gas extraction and to achieve safe mining of inclined coal seam groups. |
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AbstractList | The accurate identification of gas migration channels and enrichment regions is essential for the utilization of gas resources and safe coal mine production, which are closely related to the evolution of mining-induced fractures. Therefore, we conducted a similarity simulation study of inclined coal seam group multiple mining, adopting the 1930 Coal Mine in Xinjiang, China, as the subject. First, the evolution of mining-induced fracture parameters was elucidated. Then, the gas migration and enrichment characteristics under inclined coal seam group multiple mining were investigated. Finally, a surface well gas extraction test was performed in the mining area to verify the experimental results. The results showed that under inclined coal seam group multiple mining, the frequency, angle and width of mining-induced fractures exhibited significant asymmetric characteristics. Additionally, the surface area percentage and fractal dimension of mining-induced fractures indicated a trend of an initial large increase followed by a small increase. Moreover, under inclined coal seam group multiple mining, mining-induced fractures were more developed in the right fracture area, and gas was smoothly transported, resulting in a more likely gas enrichment region. Based on the characteristics of mining-induced fracture parameters, a step-by-step method for determining gas migration channels and enrichment regions was proposed. Moreover, the surface well gas extraction test in the mining area revealed satisfactory extraction effects. This research aimed to increase the amount of gas extraction and to achieve safe mining of inclined coal seam groups. |
Author | Chen, Zihan Li, Rifu Ma, Tengfei Kong, Fanjie Liang, Yunpei Liu, Han Zou, Quanle Ran, Qican Zhang, Bichuan |
Author_xml | – sequence: 1 givenname: Qican surname: Ran fullname: Ran, Qican organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 2 givenname: Yunpei orcidid: 0000-0003-4985-4827 surname: Liang fullname: Liang, Yunpei email: liangyunpei@126.com organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 3 givenname: Quanle surname: Zou fullname: Zou, Quanle email: quanlezou2011@126.com organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 4 givenname: Bichuan surname: Zhang fullname: Zhang, Bichuan organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 5 givenname: Rifu surname: Li fullname: Li, Rifu organization: State Key Laboratory of Gas Disaster Monitoring and Emergency Technology, Chongqing Research Institute Ltd., China Coal Technology and Engineering Group – sequence: 6 givenname: Zihan surname: Chen fullname: Chen, Zihan organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 7 givenname: Tengfei surname: Ma fullname: Ma, Tengfei organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 8 givenname: Fanjie surname: Kong fullname: Kong, Fanjie organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University – sequence: 9 givenname: Han surname: Liu fullname: Liu, Han organization: State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, School of Resources and Safety Engineering, Chongqing University |
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Keywords | Gas migration channel Inclined coal seam group Gas enrichment region Similarity simulation Mining-induced fracture |
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SubjectTerms | Channels Chemistry and Earth Sciences China Coal Coal mines Coal mining Computer Science Earth and Environmental Science Earth Sciences Enrichment Evolution Experiments Fossil Fuels (incl. Carbon Capture) fractal dimensions Fractal geometry Fractals Fractures Geography Mathematical Modeling and Industrial Mathematics Mineral Resources Mines Mining Original Paper Parameters Permeability Physics Simulation Statistics for Engineering surface area Sustainable Development |
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Title | Characteristics of Mining-Induced Fractures Under Inclined Coal Seam Group Multiple Mining and Implications for Gas Migration |
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