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A possible prediction method to determine the top concealed karst cave based on displacement monitoring during tunnel construction

机译:基于隧道施工位移监测的隐伏岩溶顶部预测方法

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摘要

The existence of concealed karst caves can cause major displacement and even large deformation of surrounding rock during karst tunnel excavation. As such, these concealed caves pose a large threat to the stability of surrounding rock and represent major hidden threats to safe tunnel construction. Here we report on our investigation of a possible method to predict the top of a concealed karst cave based on displacement monitoring during tunnel construction. Displacement laws of monitoring sections were analyzed and compared to a case study without karst caves after the tunnel was excavated once. Numerical calculation was carried out to verify the proposed method. The impacts of a number of factors were studied by taking into account the effects of displacement fields, such as tunnel depth, the surrounding rock grade, the size of the karst cave, the distance between the tunnel and the karst cave and the depth-span ratio of the karst cave, on the stability of surrounding rock in tunnels. Compared with the case study without karst caves, the surrounding rock deformation affected by the top karst cave during tunnel excavation is discussed, and simulation results were found to be consistent with those predicted by the proposed method. These research results can provide a new concepts for comprehensive forecasting techniques of the concealed karst cave.
机译:岩溶隧道开挖过程中,隐伏的岩溶洞穴的存在可能引起围岩的大位移甚至大变形。因此,这些隐蔽的洞穴对围岩的稳定性构成了很大的威胁,对安全的隧道施工构成了重大的隐患。在这里,我们报告了基于隧道施工过程中的位移监测来预测隐伏岩溶洞穴顶部的一种可能方法的调查报告。分析了监测断面的位移规律,并与隧道开挖一次后没有岩溶洞穴的案例进行了比较。数值计算验证了该方法的有效性。通过考虑位移场的影响,研究了许多因素的影响,例如隧道深度,围岩坡度,喀斯特溶洞的大小,隧道与喀斯特溶洞之间的距离以及深度跨度岩溶洞穴的比例,对隧道围岩稳定性的影响。与没有岩溶洞穴的案例研究相比,探讨了隧道开挖过程中受岩溶顶部洞穴影响的围岩变形,模拟结果与所提出的方法相吻合。这些研究结果可为隐伏岩溶洞穴的综合预测技术提供新的思路。

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