Wang En, Yin Shuaifeng, Kang Qingtao, Zhao Xubo, Lan Qiankun, Sheng Hongyuan, Liang Huiyang
School of Mine Safety, North China Institute of Science and Technology, Langfang, 065201, China.
Hebei Key Laboratory of Mine Intelligent Unmanned Mining Technology, North China Institute of Science and Technology, Beijing, 101601, China.
Sci Rep. 2024 May 27;14(1):12075. doi: 10.1038/s41598-024-61029-y.
In order to control the deformation of surrounding rock in deep high-stress and intense-mining roadways, taking a deep coal roadway with continuous deformation as an example, the characteristics of crustal stress, coal strength, and mining influence of roadway are obtained by underground tests. The combined failure mechanism of coal roadway surrounding-rock is revealed by differential stress of deep and shallow anchor cables. We propose that the improvement of surrounding rock control for coal roadway is adopting the coupling control technology of anchoring and unloading. The stress distribution and evolution laws of lateral surrounding rock of unloading holes are obtained by numerical simulation and theoretical calculation, and reasonable unloading-hole spacing of 4.0 m is comprehensively determined. A mechanical model of roadway roof beam under fixed support at both ends is constructed and the important role of anchor cable beam-truss in controlling the stability of coal roadway is obtained. The rationality of coupling control technology of anchoring and unloading and parameters has been verified by engineering test and mine pressure observation, providing technical references for surrounding rock control in deep intense-mining and large-deformation roadways.
为控制深部高应力强采动巷道围岩变形,以一条持续变形的深部煤巷为例,通过井下测试获得了巷道的地应力、煤体强度及采动影响特征。利用深浅部锚索的差应力揭示了煤巷围岩的组合破坏机理。提出煤巷围岩控制的改进措施是采用锚固与卸压耦合控制技术。通过数值模拟和理论计算得到了卸压孔侧向围岩的应力分布及演化规律,综合确定了合理的卸压孔间距为4.0 m。构建了两端固定支撑的巷道顶板梁力学模型,得出锚索梁桁架在控制煤巷稳定性中的重要作用。通过工程试验和矿压观测验证了锚固与卸压耦合控制技术及参数的合理性,为深部强采动大变形巷道围岩控制提供了技术参考。