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Analysis on Treatment Effect of Mine Tunnel Construction Spring in Karst Area

机译:喀斯特地区矿井隧道施工弹簧治疗效果分析

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The investigation of ultrashallow buried mining method in an interval revealed the existence of the karst fracture zone. The flow rate of 9 springs exposed in the initial excavation was relatively large, and the total water output per hour was nearly 300?m 3 . The filling materials in karst channels or fissures had the risk of bursting during excavation. Moreover, the ultrashallow buried tunnel undercrossed a special railway line, and the construction required higher surface deformation control. In view of the abovementioned risk problems, based on the grouting ideas of “assessment of influence,” “determination of surrounding rock,” “zone positioning,” and “dynamic grouting,” the grouting design scheme is dynamically optimized, and the grouting construction of surrounding water is cut off. Combined with the tunnel inspection, monitoring data, and numerical analysis, it is verified that the construction technology adopted in the project can ensure the stability of the project, which can provide a reference for similar projects.
机译:岩溶埋地采矿方法对岩溶裂缝区的存在。在初始挖掘中暴露的9个弹簧的流速相对较大,每小时的总水输出近300?M 3。喀斯特通道或裂缝中的填充材料具有在挖掘过程中爆裂的风险。此外,超级掩埋隧道陷入了特殊的铁路线,施工需要更高的表面变形控制。鉴于上述风险问题,基于灌浆思想“围岩评估”,“周围岩石,”区域定位“和”动态灌浆“,灌浆设计方案是动态优化的,灌浆结构围绕水被切断。结合隧道检查,监测数据和数值分析,验证了项目采用的施工技术可以确保项目的稳定性,可以为类似项目提供参考。

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