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首页> 外文期刊>Rock Mechanics and Rock Engineering >Failure Behaviors and Rock Deformation During Excavation of Underground Cavern Group for Jinping I Hydropower Station
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Failure Behaviors and Rock Deformation During Excavation of Underground Cavern Group for Jinping I Hydropower Station

机译:金平水电站挖掘地下洞穴群体失效行为与岩石变形

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摘要

Numerical simulation and field monitoring are conducted in this study to investigate rock deformation and failure behaviors during excavation of underground cavern group under high in situ stresses in Jinping I Hydropower Station. According to the numerical simulation, large deformation and damage in the surrounding rock mass result in anchorage cable overlimit. The traditional elastoplastic model only considers plastic yielding in rock mass and does not consider the evolution of damage in rock mass, i.e., initiation, propagation and coalescence of cracks. It is found from the numerical results that the damage behaviors of rock masses subjected to high in situ stresses are characterized by the formation of multi-fractured zones, i.e., the zonal disintegration. Theoretical basis, general rules and reinforcement method for zonal disintegration of the surrounding rock masses under high in situ stresses are proposed. The proposed methods are applied to strengthen support measures for construction of Jinping I Hydropower Station.
机译:本研究中进行了数值模拟和现场监测,以研究锦平I水电站高于原位应力下的地下洞穴群体挖掘过程中的岩石变形和失效行为。根据数值模拟,锚固电缆覆盖的周围岩体的大变形和损坏。传统的弹塑性型号仅考虑岩石质量的塑料,并不考虑岩体损伤的演变,即裂缝的启动,传播和聚结。从数值结果中发现,经受高于原位应力的岩体的损伤行为的特征在于形成多骨折区域,即区域崩解。提出了理论基础,提出了高于原位应力下岩体区域崩解的一般规则和增强方法。拟议的方法适用于加强锦平I水电站建设的支持措施。

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