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Key Factors Affecting the Deformation and Failure of Surrounding Rock Masses in Large-Scale Underground Powerhouses

机译:影响大型地下功耗中周围岩体变形和失效的关键因素

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The stability of the surrounding rock masses of underground powerhouses is always emphasized during the construction period. With the general trends toward large-scale, complex geological conditions and the rapid construction progress of underground powerhouses, deformation and failure issues of the surrounding rock mass can emerge, putting the safety of construction and operation in jeopardy and causing enormous economic loss. To solve these problems, an understanding of the origins and key affecting factors is required. Based on domestic large-scale underground powerhouse cases in the past two decades, key factors affecting the deformation and failure of the surrounding rock mass are summarized in this paper. Among these factors, the two most fundamental factors are the rock mass properties and in situ stress, which impart tremendous impacts on surrounding rock mass stability in a number of cases. Excavation is a prerequisite of surrounding rock mass failure and support that is classified as part of the construction process and plays a pivotal role in preventing and arresting deformation and failure. Additionally, the layout and structure of the powerhouse are consequential. The interrelation and interaction of these factors are discussed at the end of this paper. The results can hopefully advance the understanding of the deformation and failure of surrounding rock masses and provide a reference for design and construction with respect to hydroelectric underground powerhouses.
机译:在施工期间,始终强调了地下功率驻地周围岩石群众的稳定性。随着大规模,复杂地质条件的一般趋势和地下功率的快速施工进展,周围岩石质量的变形和失效问题可以出现,使危险和危险的施工和运作的安全性并造成巨大的经济损失。为了解决这些问题,需要了解起源和影响因素。在过去二十年中,基于国内大规模地下电力房案件,本文总结了影响周围岩体变形和失效的关键因素。在这些因素中,两种最基本的因素是岩体质量性质和原位应力,这赋予了许多情况下对周围岩体稳定性的巨大影响。挖掘是周围岩石大规模故障和支持的先决条件,作为施工过程的一部分,在预防和逮捕变形和失败方面发挥枢轴作用。此外,强力所的布局和结构是结果的。在本文的末尾讨论了这些因素的相互关系和相互作用。结果可以提高对周围岩体变形和失效的理解,并为水电地下功率提供了设计和结构的参考。

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