4.5 Article

Effects of the borehole drainage for roof aquifer on local stress in underground mining

期刊

GEOMECHANICS AND ENGINEERING
卷 24, 期 5, 页码 479-490

出版社

TECHNO-PRESS
DOI: 10.12989/gae.2021.24.5.479

关键词

mine water disaster; drainage; borehole; radius of influence; stress concentration

资金

  1. Natural Science Foundation [51774199, 51974172]
  2. Natural Science Foundation of Shandong Province [2019MEE004]

向作者/读者索取更多资源

Pre-drainage of groundwater in the roof aquifer by boreholes is an effective method for preventing roof water disasters, but it can also lead to local stress variations. The study found that as the water level drops during drainage, different stress zones form around the borehole, which can increase the risk of stress concentration in the overlying strata.
Pre-drainage of groundwater in the roof aquifer by boreholes is the main method for prevention of roof water disaster, and the drop in the water level during the drainage leads to the variation of the local stress in the overlying strata. Based on a multitude of boreholes for groundwater drainage from aquifer above the 1303 mining face of Longyun Coal Mine, theoretical analysis and numerical simulation are used to investigate the local stress variation in the process of borehole drainage. The results show that due to the drop in the water level of the roof aquifer during the drainage, the stress around the borehole gradually evolved. From the center of the borehole to the outside, a stress-relaxed zone, a stress-elevated zone, and a stress-recovered zone are sequentially formed. Along with the expansion of drainage influence, the stress peak in the stress-elevated zone also moves to the outside. When the radius of influence develops to the maximum, the stress peak position no longer moves outward. When the coal mining face advances to the drainage influence range, the abutment pressure in front of the mining face is superimposed with the high local stress around the borehole, which increases the risk of stress concentration. The present study provides a reference for the stress concentration caused by borehole drainage, which can be potentially utilized in the optimal arrangement of drainage boreholes in underground mining.

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