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Stability analysis and blasting caving treatment of the complex goaf system

机译:复杂GOF系统的稳定性分析和爆破塌陷处理

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Complex goaf system at Shouyun Mine is assembled by two upper and lower levels and steep left and fight two blocks, the roof cover of goaf system is shallow.The stability of the goaf system are analyzed and predicted by using FLAC 3D numerical simulation.The study shows that the state of crushing destruction limit is achieved at the two comers of roof plates, and gradually expands into a deep extension of the arch.The tensile stress distributes in the central roofs, but tensile failure will not occur;the displacement of surrounding rock at goaf system is bigger than that of other rocks, but the overall goaf system is stable.The goaf roof safe thickness is comprehensively determined by considering a variety of factors;The goaf system is treated by using fan-shaped deep holes blasting in upper treat tunnels and open deep holes compression blasting, an overlying rock protection layer of sublevel caving was formed by filling goaf areas with breakout rock;the safety of goaf handling and conversion of mining methods were organically integrated.
机译:Shouyun Mine的复杂GUAF系统由两个上层和下层组装,左左右陡峭,采用POF系统的屋顶盖浅。通过使用FLAC 3D数值模拟分析并预测GOF系统的稳定性。研究表明,破碎毁坏限制的状态下在屋顶板的两个拐角实现,并逐渐扩展到在中央屋顶的arch.The拉伸应力分布的深的扩展,但也不会发生拉伸破坏;围岩位移在Goaf System比其他岩石更大,但整个Goof系统是稳定的。通过考虑各种因素,Goof屋顶的安全厚度全面地确定;使用扇形深孔在上方处理扇形处理的GoaF系统隧道和开放的深孔压缩爆破,通过填充突破岩石的脱毛区域形成覆盖岩保护层的覆盖岩保护层; GOF处理和骗局的安全性挖掘方法的版本有机整合。

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