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Mechanism Analysis of Local Collapse in an Underground Powerhouse Based on Strength Reduction FEM and DEM

机译:基于强度减小的FEAR和DEM的地下电力院局部塌陷机制分析

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Large collapse of underground house of a hydroelectric power station happened while excavation of the top arch. The volume of collapse was up to 5000 m~3. With consideration of the field geological conditions and practical construction, by strength reduction finite element method (FEM) and discrete element method (DEM), the process of collapse is simulated, which is compared with the field monitoring data. The mechanism of instability failure is analyzed. Some conclusions are obtained. Firstly, the development of fractured weak zone β_(80), faults, joints and fissures above the top arch are the basic factors to induce this collapse. Secondly, abrupt blasting without supporting is the direct factor. So collapse of underground house can be avoided by reinforcement and supporting on the geological weak zone in time.
机译:水电站地下房子的大崩溃发生在顶部拱门的挖掘时发生。崩溃的体积高达5000 m〜3。考虑到现场地质条件和实际结构,通过强度减少有限元方法(FEM)和离散元素方法(DEM),模拟崩溃过程,与现场监测数据进行比较。分析了不稳定失败的机制。获得了一些结论。首先,在顶部拱门上方的骨折弱区β_(80),故障,关节和裂隙的发展是诱导这种崩溃的基本因素。其次,突然的爆破而不支持是直接因素。因此,通过加固和支持地质弱区,可以避免地下房屋的崩溃。

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