Analysis of Stress Removal Effect of Borehole Depth and Position on Coal-Rock with Shock Tendency

被引:0
作者
Chao Peng
Wanrong Liu
机构
[1] China University of Mining & Technology (Beijing),School of Emergency Management and Safety Engineering
[2] Liaocheng University,undefined
来源
Geotechnical and Geological Engineering | 2020年 / 38卷
关键词
Coal-rock; Drilling depth; Drilling location; Acoustic emission; Damage;
D O I
暂无
中图分类号
学科分类号
摘要
With the increase of mining depth and scale, mine dynamic disasters related to coal-rock instability, such as rock burst, are becoming more and more serious, so it is very urgent to predict them accurately. At present, the method of borehole pressure relief is relatively effective for the prediction and control of rock burst. In this paper, the numerical simulation software PFC was used to study the influence of different drilling depth and location on mechanical properties, acoustic emission characteristics and damage evolution characteristics of coal-rock mass. The results show that the greater the drilling depth and the closer the drilling location is to the upper coal seam, the better the effect of destabilizing the impact-prone coal seam is. With the increase of drilling depth, the maximum value of acoustic emission events in coal-rock mass decreases first, and then stabilizes; with the increase of drilling location (height), the maximum value of acoustic emission events in coal-rock mass increases first, and then decreases; the stability of coal-rock can be monitored by the evolution law of acoustic emission. The failure modes of coal-rock samples with different drilling depths and locations are different, and large cracks mostly exist in the local part of coal-rock samples. The damage evolution of coal-rock mass can be divided into three stages: initial non-damage stage, slow increase stage and rapid increase stage. Different drilling depth and location have different effects on rock damage evolution characteristics.
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页码:4099 / 4109
页数:10
相关论文
共 88 条
[1]  
Bukowska M(2006)The probability of rockburst occurrence in the Upper Silesian Coal Basin area dependent on natural mining conditions J Min Sci 42 570-577
[2]  
Castro-Filgueira U(2017)Sensitivity analysis of the micro-parameters used in a PFC analysis towards the mechanical properties of rocks Proc Eng 191 488-495
[3]  
Alejano LR(2007)FLAC/PFC coupled numerical simulation of AE in large-scale underground excavations Int J Rock Mech Min Sci 44 550-564
[4]  
Arzúa J(2019)Laboratory investigation of the mechanical properties of coal-rock combined body Bull Eng Geol Environ 18 551-562
[5]  
Ivars DM(1982)Statistical aspects of the continuous damage theory Int J Solids Struct 29 47-65
[6]  
Cai M(1979)A discrete numerical model for granular assemblies Geotechnique 30 114002-43
[7]  
Kaiser PK(2019)Measurement and prediction of granite damage evolution in deep mine seams using acoustic emission Meas Sci Technol 32 34-1122
[8]  
Morioka H(2012)Deep-hole directional fracturing of thick hard roof for rockburst prevention Tunn Undergr Space Technol 39 1115-153
[9]  
Minami M(2017)Laboratory and numerical experiments on pressure relief mechanism of large-diameter boreholes Chin J Geotech Eng 61 141-15
[10]  
Maejima T(2013)Long-hole destress blasting for rockburst control during deep underground coal mining Int J Rock Mech Min Sci 39 11-928