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Mechanism analysis and control technology of surrounding rock failure in deep soft rock roadway

机译:深柔软岩路围岩故障的机理分析与控制技术

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摘要

In order to research the surrounding rock control technology of deep soft rock roadway, the air returning cross-cut of Xinhu Coal Mine in Bozhou City was taken as an example to study the failure characteristics, roadway deformation mechanism and surrounding rock repair technology. Before the surrounding rock of the roadway is repaired, the roof of the roadway sink seriously, the floor heave is obvious, and the surrounding rock strength is low, showing characteristics of soft rock. Therefore, The composite support method of "shotcreting + grouting anchor bolt + anchor bolt + grouting anchor cable + anchor cable " is proposed by the full-section layer-double arch synergy reinforcement technology. The technical parameters of the scheme are determined by theoretical analysis, engineering analogy and engineering practice. The numerical simulation is adopted to verify the rationality of the layer-double arch collaborative reinforcement technology. And, the on-site monitoring results show that the deep soft rock roadway can be effectively controlled by the composite support scheme, which can provide reference value for other similar engineering.
机译:为了研究深柔软的岩路巷道的周围岩石控制技术,博州市新湖煤矿的空气返回交叉切割,以研究失效特性,道路变形机制及周边岩修复技术。在巷道周围的岩石修复之前,巷道的屋顶严重沉沦,地板升降了明显,周围的岩石强度低,显示出软岩的特点。因此,全段层双拱形协同加固技术提出了“喷射+灌浆锚螺栓+锚螺栓+锚杆螺栓螺栓螺栓螺栓螺栓+锚索电缆”的复合支撑方法。该方案的技术参数由理论分析,工程类比和工程实践决定。采用数值模拟来验证层双拱形协同加固技术的合理性。并且,现场监测结果表明,深软岩路巷道可以通过复合支撑方案有效控制,这可以为其他类似工程提供参考价值。

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