4.7 Article

The instability criticality and safety factor of coal-gas outburst induced by shear failure based on limit analysis

期刊

FUEL
卷 303, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2021.121245

关键词

Coal-gas outburst; Strength reduction; Shear slip; Overall failure; Limit safety factor

资金

  1. State Key Laboratory for GeoMechanics and Deep Underground Engineering, China University of Mining & Technology, Beijing [SKLGDUEK2019]
  2. National Natural Science Foundation of China [51774292, 51874314, 51604278, 51804312]
  3. Yue Qi Distinguished Scholar Project, China University of Mining & Technology, Beijing
  4. Yue Qi Young Scholar Project, China University of Mining &Technology, Beijing

向作者/读者索取更多资源

Coal is a natural pore-fracture dual medium, with gas migration affecting the mechanical damage properties of coal and the occurrence of coal-gas outburst. The occurrence of outburst is accompanied by instantaneous displacement mutation of gas-bearing coal, which is difficult to explain. A progressive failure and outburst hypothesis model based on strength reduction theory is proposed for outburst prevention and control.
Coal is a kind of natural pore-fracture dual medium, which determines the diffusion and seepage characteristics of gas inside under the stress conditions. In turn, the gas migration has an effect on the mechanical damage properties of coal and is closely related to the occurrence of coal-gas outburst. The occurrence of outburst is inevitably accompanied by the instantaneous displacement mutation of gas-bearing coal, which is difficult to explained by conventional plastic zone analysis. And the process from plastic failure to instability is still vague, which makes the instability critical of outburst difficult to determine. Therefore, aiming at the outburst in the working face, we put forward a progressive failure and outburst hypothesis model based on the limit analysis method of strength reduction theory. Then, the limit instability criterion of gas-bearing coal is modified, and the coal-gas outburst in the strength reduction process is simulated by using the cyclic calculation method of COMSOL software. It describes the characteristics of fluid-structure coupling and progressive failure instability of gas-bearing coal. Finally, we use the limit safety factor to describe the outburst criticality and the outburst risk. We find that the initial uncovering coal area, stress and gas pressure play an important role in controlling outburst, especially the coal stability is extremely sensitive to gas pressure changes under high stress. And based on these, the outburst prevention and control measures are put forward. The method has potential application value for the risk assessment and prevention of outburst on site.

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