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| Study on roof-cutting pressure relief and surrounding rock control technology for thick-hard roof strata in Xieqiao Mine |
| Yang Dechuan1, Liu Hao1, Liu Chang2 |
1. School of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, China;
2. Xieqiao Colliery of Huaihe Energy Co., Ltd., Huainan 232001, China |
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Abstract For addressing the intense strata pressure induced by thick-hard roof in the haulage gateway of No.11618 transport roadway at Xieqiao Mine in Huainan, a combined methodology of numerical simulation and field monitoring was employed to systematically analyze the regulatory mechanism of presplitting blasting roof-cutting and pressure relief technology on the stress field of surrounding rock. A FLAC3D model, founded on the Mohr-Coulomb criterion, was developed to elucidate the dynamic evolution characteristics of stress fields before and after roof-cutting. The results demonstrated that the roof-cutting and pressure relief technology significantly optimized the roof stress distribution: the vertical stress peak decreased by 17.8%, and the stress concentration zone shifted 3.4 m deeper into the coal mass. Concurrently, the peak of advanced abutment pressure reduced from 63 MPa (without roof-cutting) to 56 MPa, while the vertical stress peak in the coal rib increased by 21% due to stress redistribution. Field monitoring data revealed that the maximum roof-floor convergence remained below the 300 mm warning threshold, and the bearing capacity of bolt-cable support systems remained stable, confirming the effectiveness of this technology in controlling surrounding rock deformation.
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| 1 ] 何 杰,程 蓬,吴 乐,等. 坚硬顶板动压巷道远近应力场演化规律及调控技术[ J ]. 煤炭科学技术,2024,52( 12 ):1 - 11.
[ 2 ] 卜庆为,涂 敏,张向阳,等. 采场厚硬顶板破断失稳与能量聚散演化研究[ J ]. 采矿与安全工程学报,2022,39( 5 ):867 - 878.
[ 3 ] 高明仕,徐 东,贺永亮,等. 厚硬顶板覆岩冲击矿震影响的远近场效应研究[ J ]. 采矿与安全工程学报,2022,39( 2 ):215 - 226.
[ 4 ] 杨 科,刘文杰,李志华,等. 厚硬顶板下大倾角软煤开采灾变机制与防控技术[ J ]. 煤炭科学技术,2021,49( 2 ):12 - 20.
[ 5 ] 刘文超,赵毅鑫,郭继鸿. 新街矿区厚硬顶板条件邻空巷道冲击地压机理与控制[ J ]. 煤田地质与勘探,2024,52( 10 ):153 - 165.
[ 6 ] 康永全,薛 里,孙崔源,等. 对强岩爆隧道进行分区爆破卸压的设计方法[ J ]. 工程爆破,2021,27( 6 ):52 - 58.
[ 7 ] 李 辉,宋宇航,毕健成,等. 孤岛工作面侧向顶板结构及切顶卸压技术[ J ]. 科学技术与工程,2024,24( 36 ):15 396 - 15 403.
[ 8 ] 张 杰,孙建平,何义峰,等. 切顶无煤柱复用留巷顶板变形及控制研究[ J ]. 煤矿安全,2024,55( 12 ):153 - 160.
[ 9 ] 高玉兵,王 琦,杨 军,等. 特厚煤层综放开采邻空动压巷道围岩变形机理及卸压控制[ J ]. 煤炭科学技术,2023,51( 2 ):83 - 94.
[ 10 ] 何满潮,宋振骐,王 安,等. 长壁开采切顶短壁梁理论及其110工法——第三次矿业科学技术变革[ J ]. 煤炭科技,2017( 1 ):1 - 9,13.
[ 11 ] 张百胜,王朋飞,崔守清,等. 大采高小煤柱沿空掘巷切顶卸压围岩控制技术[ J ]. 煤炭学报,2021,46( 7 ):2 254 - 2 267.
[ 12 ] 刘 菁,涂 敏,张向阳,等. 侧向悬臂切顶煤柱上方顶板应力及位移研究[ J ]. 矿业研究与开发,2023,43( 3 ):92 - 97.
[ 13 ] 王 飞,王绪强,石新禹,等. 厚直接顶作用下切顶深度对沿空留巷稳定性影响分析[ J ]. 工矿自动化,2024,50( 12 ):59 - 66.
[ 14 ] 黄青荣,马振乾,周金恋,等. 不同切顶参数对沿空巷道围岩变形的影响[ J ]. 矿业研究与开发,2024,44( 12 ):94 - 104. |
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