The effect of gas migration on the deformation and permeability of coal under the condition of true triaxial stress

被引:0
作者
Gang Wang
Zhiyuan Liu
Pengfei Wang
Yangyang Guo
Wenrui Wang
Tengyao Huang
Wenxin Li
机构
[1] Shandong University of Science and Technology,Mine Disaster Prevention and Control
[2] Shandong University of Science and Technology,Ministry of State Key Laboratory Breeding Base
[3] North China Institute of Science and Technology,College of Mining and Safety Engineering
来源
Arabian Journal of Geosciences | 2019年 / 12卷
关键词
Coal mine methane drainage; True triaxial test; Intermediate principal stress; Gas pressure; Permeability;
D O I
暂无
中图分类号
学科分类号
摘要
The dynamic characteristics of gas flow are often not considered in a true triaxial stress environment, making the simulation test hard to meet the requirement for coal and gas outburst in reality. To solve this issue, we investigated the deformation and gas flow characteristics of coal-like briquette under true triaxial stress conditions using self-developed triaxial servo-controlled seepage equipment for fluid-solid coupling of coal containing methane. Analysis of the experimental data revealed the relationship of coal body’s stress to strain as well as the relationship of their permeability. The results showed that in the conventional triaxial and true triaxial compression seepage tests, the relationship of stress-strain-permeability varies at different stages. The stress-strain curves in the whole stress-strain process of coal show a trend of decrease after increase, while the permeability-strain curves show a trend of increase after decrease. There is a “stress-sensitive zone” in the influence of the intermediate principal stress on the minimum permeability of the coal. The gas pressure promotes the “fluctuation” strain of the coal body, resulting in an instantaneous increase in the strain rate. The research provides the experimental basis for studying the permeability of coal body in the true triaxial stress environment.
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[11]  
Yang H(2010)Permeability evolution of shale under anisotropic true triaxial stress conditions Transp Porous Media 83 333-347
[12]  
Wang W(2018)Creep law and model of coal under triaxial loading at different gas pressures J Nat Gas Sci Eng 52 492-506
[13]  
Ding Y(2006)Gas permeability of fractured sandstone/coal samples under variable confining pressure SPE Reserv Eval Eng 9 26-29
[14]  
Yue ZQ(2015)Permeability evolution of anthracite coal considering true triaxial stress conditions and structural anisotropy Int J Min Sci Technol 25 31-35
[15]  
Dutka B(1967)Secondary porosity and permeability of coal vs. gas composition and pressure J Geophys Res 72 5117-5131
[16]  
Haimson B(1971)Study on law of raw coal seepage during loading process at different gas pressures J Geophys Res 76 1255-1269
[17]  
Chang C(2012)Effect of the intermediate principal stress on rock failure Eng Geol 124 109-118
[18]  
He S(2018)Fracture and flow of rocks under high triaxial compression Greenh Gases 50 37-50
[19]  
Jin L(2018)The influence of the intermediate principal stress on rock failure behaviour: a numerical study J China Coal Soc 43 3329-3337
[20]  
Ou S(2017)Effect of the intermediate principal stress on the evolution of mudstone permeability under true triaxial compression Int J Rock Mech Min Sci 40 179-188