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Numerical simulation and safety analysis for tunnel excavation near gob with groundwater

机译:采空区附近采空区隧道开挖数值模拟及安全性分析

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The huge groundwater usually surges from a watereroded cave or gob during the deep mining and construction of deep-buried long tunnel. It is very important to study the simulation and control of damage resulted from the underground cavern (e.g. gob) with groundwater for the tunnel excavation. Based on the rules of groundwater movement, the hydraulics theory and the seepage principles of fractured rock masses, associated with the geological conditions of the Changba Lead-zinc Mine, the damages resulted from the gob with groundwater for the tunnel excavation were simulated and analyzed using FLAC3D software. The changes of the stress, strain and displacement of the rock masses around the gob and tunnel was obtained under the condition of gob with groundwater. The changes of the plastic zone and stress field were analyzed, the minimal thickness of waterproof layer for keeping tunnel safe was estimated. Based on numerical modelling, a series of curves for rock mass response and deformation are obtained, which provides the basis of guiding the design and construction of rock tunnels in underground mines.
机译:在深埋长隧道的深部开采和建造过程中,巨大的地下水通常从水蚀的洞穴或采空区涌出。研究地下洞室(例如采空区)和地下水对隧道开挖造成的破坏的模拟和控制非常重要。根据地下水运移规律,水力学说和裂隙岩体的渗流原理,结合长坝铅锌矿山的地质条件,对采空区地下水对隧道开挖的破坏进行了模拟分析。 FLAC3D软件。在采空区采地下水的条件下,得到了采空区和隧道周围岩体的应力,应变和位移的变化。分析了塑性区和应力场的变化,估算了保持隧道安全的最小防水层厚度。在数值模拟的基础上,获得了一系列岩体响应和变形的曲线,为指导地下矿山岩洞的设计和施工提供了基础。

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