4.2 Article

Stress distribution characteristic analysis and control of coal and gas outburst disaster in a pressure-relief boundary area in protective layer mining

期刊

ARABIAN JOURNAL OF GEOSCIENCES
卷 10, 期 16, 页码 -

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s12517-017-3149-z

关键词

Protective coal seam; Pressure-relief boundary; Stress distribution; Precautions against a coal and gas outburst

资金

  1. National Natural Science Foundation of China [51604168, 51504142]
  2. Natural Science Foundation of Shandong Province (CN) [ZR2014EEQ038, ZR2016EEQ18]
  3. China Postdoctoral Science Foundation [2016 M592222]
  4. Specialized Support for the Postdoctoral Application Research Program of Qingdao [2016123]
  5. Scientific Research Foundation of Shandong University of Science and Technology for Recruited Talents [2015RCJJ046]

向作者/读者索取更多资源

Coal and gas outburst disasters in coal seams are becoming more serious as coal mines extend deeper underground in China. Furthermore, the protective coal seam mining technology featured by economic efficiency has been proven to be the most effective and widely applied method for the prevention of coal and gas outburst disasters. However, the determinations of the protective area coal and gas outburst prevention in a pressure-relief boundary area are fundamental issues that research should be focused on. The technical method for determining stress distribution in pressure-relief boundary area during protective coal seam mining is put forward in this paper. The method is based on a stress-seepage coupled relationship within a gas-containing coal seam. The method includes complex lab experiments and on-site measurements at the Qingdong Coal Mine. The final data illustrate that the permeability and vertical stress in the pressure-relief boundary area of the coal sample form a negative exponential function relationship. Additionally, the permeability of the coal sample within the abovementioned area is significantly different compared with that located at the center of the pressure-relief area. In the pressure-relief boundary area, the gas pressure distribution gradient is 0.0375 MPa/m, while the vertical stress distribution gradient registers 0.56 MPa/m. Under this condition, coal and gas outburst disasters are prone to be triggered. Therefore, effective precautions against coal and gas outburst disasters can be put forward in accordance with stress distribution characteristics within the abovementioned Bboundary area.

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