Xue Yan-Ping
China Coal Technology and Engineering Group Shenyang Research Institute, Fushun, 113122, China.
State Key Laboratory of Coal Mine Safety Technology, Fushun, 113122, China.
Sci Rep. 2024 Oct 7;14(1):23304. doi: 10.1038/s41598-024-74793-8.
This study introduces an innovative optimized bolting support system specifically tailored for gob-side entry excavation in thick coal seams at a coal mine in southwestern Shandong, China. Employing theoretical analysis, numerical simulation, and field measurements, the research focuses on examining the failure characteristics of surrounding rock during gob-side entry excavation. The key innovation lies in the development of a 5-meter optimal coal pillar width, ensuring balanced stress distribution and structural integrity. Additionally, a lag time of at least 46 days between gob-side entry excavation and the upper working face retreat is recommended to mitigate roof subsidence and surrounding rock deformation. The optimized bolting support system, featuring increased bolt pretension, utilization of high-strength steel strips, and reinforcement of weak points, effectively reduces deformation of the roadway surrounding rock, meeting support requirements for normal production. This novel approach successfully addresses the support challenges in thick coal seam gob-side entry excavation, enhancing mining safety and resource recovery rates.
本研究介绍了一种创新的优化锚杆支护系统,该系统专门为中国山东西南部某煤矿厚煤层沿空掘巷而设计。通过理论分析、数值模拟和现场实测,该研究聚焦于考察沿空掘巷过程中围岩的破坏特征。关键创新在于开发出5米的最优煤柱宽度,确保应力分布平衡和结构完整性。此外,建议沿空掘巷与上覆工作面回撤之间至少间隔46天,以减轻顶板下沉和围岩变形。优化后的锚杆支护系统具有更高的锚杆预紧力、采用高强度钢带并加强薄弱点,有效减少了巷道围岩变形,满足了正常生产的支护要求。这种新方法成功解决了厚煤层沿空掘巷中的支护难题,提高了开采安全性和资源回收率。