Plugging effects by GPM based two-phase flow in gas drainage fracture: A simulation study

Mine gas drainage is the key measure to control gas disasters. Fractures in coal seams often lead to the failure of gas drainage. In order to improve plugging effects in such fracture, in this paper, the distribution of the solid waste material particles-coal gangue and modified bentonite-xanthan mu...

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Published in:International journal of rock mechanics and mining sciences (Oxford, England : 1997) Vol. 174; p. 105639
Main Authors: Cheng, Jianwei, Ran, Dezhi, Ju, Yiwen, Fu, Qiang, Luo, Wang
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-02-2024
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Abstract Mine gas drainage is the key measure to control gas disasters. Fractures in coal seams often lead to the failure of gas drainage. In order to improve plugging effects in such fracture, in this paper, the distribution of the solid waste material particles-coal gangue and modified bentonite-xanthan mucus (MBXM) is proposed and is simulated by using three kinds of cracks flow-solid coupling model of EDEM-Fluent. The results show that when particle production and gangue particle-mucus (GPM) velocity rises, the distance between the grouting mouth and the bridge blinding also increases; The plugging time of horizontal fractures and expansion fractures increases with a rise in particle production and velocity. However, the plugging time of shrinkage fractures firstly increases and decreases later; In the process of vertically downward strata migration, vertical compression and horizontal movement pattern can be observed. The length of bridge blinding is much longer and the plugging effect is much better; The stress concentration zone between particles and rock layers occurs at the contact point, as well as between particles; the velocity and particle size distribution have the greatest impact on the bridge blinding position and time respectively. The application of GPM as gas sealing is not only scientifically reasonable, but also highly relevant from an environmental protection perspective. And it has strong potential in practical engineering applications.
AbstractList Mine gas drainage is the key measure to control gas disasters. Fractures in coal seams often lead to the failure of gas drainage. In order to improve plugging effects in such fracture, in this paper, the distribution of the solid waste material particles-coal gangue and modified bentonite-xanthan mucus (MBXM) is proposed and is simulated by using three kinds of cracks flow-solid coupling model of EDEM-Fluent. The results show that when particle production and gangue particle-mucus (GPM) velocity rises, the distance between the grouting mouth and the bridge blinding also increases; The plugging time of horizontal fractures and expansion fractures increases with a rise in particle production and velocity. However, the plugging time of shrinkage fractures firstly increases and decreases later; In the process of vertically downward strata migration, vertical compression and horizontal movement pattern can be observed. The length of bridge blinding is much longer and the plugging effect is much better; The stress concentration zone between particles and rock layers occurs at the contact point, as well as between particles; the velocity and particle size distribution have the greatest impact on the bridge blinding position and time respectively. The application of GPM as gas sealing is not only scientifically reasonable, but also highly relevant from an environmental protection perspective. And it has strong potential in practical engineering applications.
ArticleNumber 105639
Author Cheng, Jianwei
Luo, Wang
Fu, Qiang
Ran, Dezhi
Ju, Yiwen
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  organization: School of Safety Engineering, China University of Mining and Technology, Xuzhou, Jiangsu, 221116, China
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  givenname: Dezhi
  surname: Ran
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  surname: Fu
  fullname: Fu, Qiang
  organization: School of Safety Engineering, China University of Mining and Technology, Xuzhou, Jiangsu, 221116, China
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  givenname: Wang
  surname: Luo
  fullname: Luo, Wang
  organization: School of Safety Engineering, China University of Mining and Technology, Xuzhou, Jiangsu, 221116, China
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crossref_primary_10_1021_acs_energyfuels_4c00923
crossref_primary_10_1016_j_powtec_2024_119754
Cites_doi 10.1007/s42461-022-00607-y
10.1016/j.cemconcomp.2020.103687
10.1016/j.psep.2023.07.016
10.1016/j.cherd.2017.05.021
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Keywords Particles-mucus
EDEM-Fluent fluid-solid coupling
Particle plugging
Gas drainage
Fracture sealing
Language English
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Snippet Mine gas drainage is the key measure to control gas disasters. Fractures in coal seams often lead to the failure of gas drainage. In order to improve plugging...
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StartPage 105639
SubjectTerms EDEM-Fluent fluid-solid coupling
Fracture sealing
Gas drainage
Particle plugging
Particles-mucus
Title Plugging effects by GPM based two-phase flow in gas drainage fracture: A simulation study
URI https://dx.doi.org/10.1016/j.ijrmms.2024.105639
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