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Stability Analysis and Control Measures of Large-Span Open-Off Cut with Argillaceous Cemented Sandstone Layered Roof

机译:大跨度砂岩砂岩屋顶大跨度开关切割的稳定性分析及控制措施

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This paper is based on the condition where layered argillaceous cemented sandstone as an engineering background is met by the No. 207 fully mechanized working face open-off cut (Wanli No. 1 Coal Mine). Through mechanical theory analysis and field practice, the engineering safety problem of the large-span argillaceous cemented sandstone layered open-off cut roof supporting structure was analyzed. The roof caving arch height of the open-off cut roadway in 207 working face was obtained based on the mechanical mechanism of instability and caving of the layered surrounding rock mass roof. The anchor cable suspension and bearing stability of the open-off cut roof were analyzed in terms of the layered beam structure model. Meanwhile, combining with conditions, reasonable and effective support countermeasures and key parameters are proposed for such open-off cut roadway and enhance the actual supporting engineering on-site. These research results could provide engineering reference for an open-off cut roadway with composite roof conditions featured to weak cementation and weak interlayer.
机译:本文基于作为工程背景的分层泥浆砂岩作为工程背景的条件,由No.207全机械化工作面开口切割(Wanli No.1煤矿)满足。通过机械理论分析和现场实践,分析了大跨度泥浆砂岩层状开关切断屋顶支撑结构的工程安全问题。基于围岩岩体屋顶的不稳定性和洞穴的机械机制,获得了207个工作面的开关道路的屋顶塌陷拱高。根据层状光束结构模型分析开关切割屋顶的锚缆线悬架和轴承稳定性。同时,建议与条件,合理且有效的支持对策和关键参数相结合,为这种开关划线道路提高了现场实际支持工程。这些研究结果可以为具有薄弱胶粘剂和弱层间的复合屋顶条件提供工程参考。

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