Rock Squeezing Analysis in Young Mountains: A Case Study of Headrace Tunnel of Supermadi Hydroelectric Project in Nepal

D. Joshi, S. Panthee
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Abstract

The tunnel stability was assessed by analysing stress in the opening. Squeezing is the major problem faced while excavation a tunnel alignment in Himalayan region. This research was done in Super Madi hydroelectric project of 44 MW, in which main focus on the rock mass section of headrace tunnel of Inverted D shaped. The prediction of squeezing is done using various empirical, semi empirical, semi analytical and numerical modeling for the three different rock class. Finite element analysis was done using Rock science Phase2 software and output was verified by site investigation. The main lithologies of the area along the tunnel axis are banded gneiss. Based on the site condition, this study recommend the accurate method of predicting rock squeezing in the lesser Himalayan region with similar site conditions. It is found that the higher deformation occurs in high tunnel depth with low Q value.
年轻山区岩石挤压分析——以尼泊尔Supermadi水电站引水隧洞为例
通过分析开口处的应力来评价隧道的稳定性。挤压是喜马拉雅地区隧道线形开挖面临的主要问题。本文以44 MW超马地水电站为研究对象,主要对倒D形引水隧洞岩体断面进行了研究。采用经验、半经验、半解析和数值模拟方法对三种不同岩石类型进行了挤压预测。采用Rock science Phase2软件进行有限元分析,并通过现场调查对结果进行验证。沿隧道轴线发育的主要岩性为条带状片麻岩。在此基础上,提出了具有相似立地条件的小喜马拉雅地区岩石挤压的准确预测方法。结果表明,隧道深度越大,Q值越低,变形越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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