Joint instability mechanism and control technology of high and low roof strata of retreat roadway under coal pillar

被引:0
|
作者
Chu Y. [1 ]
Zhang Y. [1 ,2 ]
Wang X. [1 ]
Luo Y. [1 ]
Li X. [1 ]
Li M. [1 ]
Gu H. [1 ]
Lyu Y. [1 ]
机构
[1] School of Mines, China University of Mining & Technology, Xuzhou
[2] Huoluowan Colliery, Shendong Tianlong Group, Ordos
关键词
hydraulic fracturing; joint instability of roof strata; residual pillar; retreat roadway; thick and hard roof;
D O I
10.13532/j.jmsce.cn10-1638/td.20231103.001
中图分类号
学科分类号
摘要
When the overlying residual coal pillar is extracted from the working face at the end of mining period,the high and low thick hard roof strata of the short-distance retreat roadway is prone to joint instability,which leads to the strong deformation of the roadway and the difficulty of safe withdrawal of equipment. A mechanical model of joint instability was establised in this study for the residual coal pillar with high and low hard roof strata. The load variation of bracket was analyzed when coal mining beneath the residual coal pillar. This study also elucidated the sources of the combined instability risk in the high and low roof strata beneath the residual coal pillar during the final extraction phase. The surrounding rock optimization and control technology of high-level directional hole area hydraulic fracturing + low-level straight hole local hydraulic fracturing was proposed based on the distribution of peak abutment pressure in the roof of the residual coal pillar,the law of hydraulic fracturing fracture expansion,and the effect of fracture location of low basic roof on the stress evolution of retreat roadways. The proposed control technology was successfully used in the 31107 working face of Huoluowan Colliery. The proposed technology could effectively control the high stress concentration and strong dynamic load in the final mining period,and ensure the stability of the surrounding rock of retreat roadways and the safe withdrawal of equipment. © 2023 Editorial Office of Journal of Mining and Strata Control Engineering. All rights reserved.
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  • [1] LYU Huawen, The mechanism of stability of pre-driven rooms and the practical techniques, Journal of China Coal Society, 39, S1, pp. 50-56, (2014)
  • [2] ZHANG Yi, ZHANG Xiangyang, BU Qingwei, Et al., Analysis on bearing stability of roof surrounding rock support in thick coal roof cutting roadway[J], Journal of Mining and Strata Control Engineering, 4, 6, (2022)
  • [3] WANG Tongxu, ZHOU Yonghui, JIANG Donghai, Study on energy released from hard roof fracture and its influence on coal seam disturbance[J], Journal of Shandong University of Science and Technology(Natural Science), 41, 4, pp. 30-38, (2022)
  • [4] WANG Qingfeng, CHEN Hang, ZHOU Tao, Development history and prospect of automatic drilling technology and equipment in coal mine[J], Mining Safety & Environmental Protection, 49, 4, pp. 45-50, (2022)
  • [5] HE Anmin, Application of ''auxiliary roadway multi-channel'' process design in fully mechanized mining face retracement[J], Coal Engineering, 39, 10, pp. 5-6, (2007)
  • [6] YAN Shuai, ZHANG Dong, BAI Jianbiao, Et al., Stability mechanism and active-passive joint control of surrounding rock in longwall recovery room[J], Journal of Mining & Safety Engineering, 40, 4, pp. 774-785, (2023)
  • [7] WANG Zhaohui, KONG Dezhong, WANG Chuang, Et al., Mechanism and control of surrounding rock breakdown at mining equipment withdrawn stage from high intensity coal mining face in shallow depth seam[J], Coal Engineering, 46, 9, pp. 76-79, (2014)
  • [8] KANG Hongpu, Temporal scale analysis on coal mining and strata control technologies, Journal of Mining and Strata Control Engineering, 3, 1, (2021)
  • [9] ZHU Weibing, REN Dongdong, CHEN Meng, Rational buried depth for regulating roadway application during coal face withdrawal in Shendong mining area[J], Journal of Mining & Safety Engineering, 32, 2, pp. 279-284, (2015)
  • [10] WANG Xiaozhen, JU Jinfeng, XU Jialin, Theory and applicable of yield mining at ending stage of fully-mechanized face in shallow seam at shendong mine area[J], Journal of Mining & Safety Engineering, 29, 2, pp. 151-156, (2012)