Surrounding rock stability of deep high level stress fractured roadway and its control in Guotun Mine
Wang Chao1,2, Li Xiang1,3, Wang Bingyan1,4, Hou Weihua5, Weng Hongzhou5, Zhao Renbao5, Zhang Guangchao1
1. National Demonstraion Center for Experimental Mining Engineering Education, Shandong University of Science and Technology, Qingdao 266590, China; 2. Feicheng Natural Resources and Planning Bureau of Shandong Province, Tai'an 271600, China; 3. Supervision Branch of Western Shandong Coal Mine Safety Supervision Bureau, Jining 272000, China; 4.Technical Service Center, Jining 272000, China; 5. Guotun Mine, Heze Coal
and Electricity Corporation Ltd., Heze 274000, China
Aiming at the problems of large deformation of surrounding rock and damage of supporting system in deep high-level stress-fractured roadway, Guotun Mine -808 Shimen roadway was taken as the research background, Deformation failure mechanism and control technology was studied by field investigation, drilling peeping, and underground testing. The influence of surrounding rock fragmentation and high level stress on the stability of surrounding rock was analyzed, and the coordinated control technologies of top anchor “anchor net beam + floor” and “inverted bottom arch + anchor + grouting” were proposed. On-site engineering practice showed that after adopting this support scheme, the deformation of the stone gate of the -808 m track tended to be stable, and provided technical support for the surrounding rock control of the roadway under similar conditions.
王 超1,2,李 祥1,3,王炳延1,4,侯伟华5,翁洪周5,赵仁宝5,张广超1. 郭屯煤矿深部高水平应力碎裂巷道围岩稳定及其控制[J]. 煤炭与化工, 2019, 42(11): 21-24.
Wang Chao1,2, Li Xiang1,3, Wang Bingyan1,4, Hou Weihua5, Weng Hongzhou5, Zhao Renbao5, Zhang Guangchao1 . Surrounding rock stability of deep high level stress fractured roadway and its control in Guotun Mine. CCI, 2019, 42(11): 21-24.