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Study on Deformation Mechanism and Supporting Countermeasures of Compound Roofs in Loose and Weak Coal Roadways

机译:宽松煤气道路中复合屋顶变形机理及配套对策研究

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This paper considers the 333 return airway of the Gaokeng Coal Mine to analyze the deformation characteristics and failure mechanism of the surrounding rock of the composite roof for a loose and weak coal roadway. The reasons for the large deformation are explored and the superiority of the prestressed truss and anchor rope is compared to ordinary anchor cables from the perspective of mechanics to propose a targeted coal roadway support method. Sinking of the composite roof in the coal roadway is accompanied with a release and transfer of the surrounding rock stress. The pressure of the composite roof transfers to the roadway sides and intensifies the fracture process of the coal body. As a result, the ability to support the composite roof is weakened, and it further bends and sinks to form a vicious cycle that repeats itself. Therefore, the support of the composite roof in the coal roadway should consider the roof, roadway sides, and floor as a single unit to achieve the support goal of reinforcing the roadway sides and roof. Based on the above analysis, a comprehensive control technology with a truss and anchor rope is proposed as the main body and a bolt?+?anchor cable?+?metal network as the auxiliary. This technology can improve the integral bearing capacity of the composite roof, strengthen the roadway side structures, and reinforce the roadway sides and roof. Numerical simulation and field application results show that the support scheme can effectively realize safe control of the composite roof in coal roadways.
机译:本文考虑了盖城煤矿的333返回气道,分析了宽松煤巷围岩周围岩石的变形特性和故障机理。探索了大变形的原因,并将预应力桁架和锚绳的优越性与机械的角度相比,普通锚固电缆从机械师的角度提出了一个有针对性的煤道路支持方法。煤道路中的复合屋顶下沉伴随着周围岩石胁迫的释放和转移。复合屋顶的压力转移到道路侧面,并加强了煤体的断裂过程。结果,削弱了支撑复合屋顶的能力,并且进一步弯曲和沉没,以形成重复自身的恶性循环。因此,煤巷中复合屋顶的支撑应考虑屋顶,道路侧面和地板作为一个单位,以实现加强道路侧面和屋顶的支撑目标。基于上述分析,提出了一种具有桁架和锚绳的综合控制技术作为主体和螺栓?+?锚索?+?金属网络作为辅助。该技术可以提高复合屋顶的整体承载力,加强道路侧结构,加强道路侧面和屋顶。数值模拟和现场应用结果表明,支撑方案可以有效地实现煤道路中复合屋顶的安全控制。

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