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Stability analysis of surrounding rock of a large hydropower cavern in the Himalayas

机译:喜马拉雅山大型水电洞室围岩稳定性分析

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The stability of a large underground powerhouse in the Himalayas has been evaluated.This underground powerhouse cavern constitutes a major component of a Hydro Electric Project in Bhutan.It has experienced a number of instabilities during and after construction.Approximately 5 percent of the bolts in the powerhouse are reported to have failed and the walls of the cavern are continuing to converge,albeit at a slow rate since its completion in 2008.Plans are underway to stabilize this important underground structure.The cavern is located in the complex geological conditions of the Himalayas and close to a high stress thrust zone known as the Main Central Thrust (MCT).This paper evaluates the stability of the powerhouse and discusses measures to strengthen the cavern.Both finite and distinct element analysis are performed to better understand the behavior of the rock mass surrounding the cavern.The results from numerical simulations showing convergences in the walls of the cavern are in fair agreement to those observed at the site.An energy-absorbent support system is recommended for the rehabilitation of the side walls of the cavern.
机译:喜马拉雅山大型地下厂房的稳定性已得到评估,该地下厂房洞穴是不丹水力发电项目的主要组成部分,在施工期间和施工后都经历了许多不稳定情况,其中约5%的螺栓处于稳定状态。据报道,该发电厂已发生故障,并且该洞穴的墙壁自2008年竣工以来一直以缓慢的速度收敛。正在计划稳定这一重要地下结构的位置。该洞穴位于喜马拉雅山复杂的地质条件下并评估了动力室的稳定性并讨论了加强洞穴的措施。进行了有限元分析和离散元分析,以更好地了解岩石的行为数值模拟的结果显示了洞壁的收敛性在f中与现场观察到的空气一致。建议使用能量吸收支持系统修复洞穴的侧壁。

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