DEFORMATION MECHANISM AND STABILITY EVALUATION OF LEFT ABUTMENT DEBRIS IN XILUODU HYDROPOWER STATION
CUI Yulong1,WEI Jinbing1,DENG Jianhui 1,ZHENG Hongchun1,WANG Dikai2,YAO Li3
(1. School of Water Resources and Hydropower,Sichuan University,Chengdu,Sichuan 610065,China;2. HydroChina Chengdu Corporation Engineering,Chengdu,Sichuan 610072,China;3. Department of Water Resource and Architecture Engineering,Sichuan Agricultural University,Yaan,Sichuan 625014,China )
Abstract:Through analyzing the deformation characteristics of ground surface and slip zone,variation of the pore water pressure,combined with geolocial structure of the debris and the verification of limit equilibrium calculation,the creep deformation mechanisms of the debris has been studied and the stability has been evaluated. These provide a reliable basis for development and implementation of engineering measures. It is found that the disturbance caused by excavation leads to a shear deformation dislocation along the old slip zone,and then formed bottom-up microcracks inside the debris. It was filled with water inside the microcracks near the slip within a certern elevation range. Groundwater within the microcracks would generate hydrostatic pressure on the sliding body and increase hydrostatic pressure in the slip zone. These changes will reduce stability facter and exacerbate the deformation of the debris. The deformation slows down because of the dissipation of the hydrostatic pressure and healing of the microcracks caused by finishing of the cutting and construction of drainage holes. The research results provide reference value for future similar comprehensive analysis of the slope monitoring data,deformation mechanisms analysis and engineering treatment.
中国水电顾问集团成都勘测设计研究院. 溪洛渡水电站洞室与边坡工程监测资料综合分析中间报告之四——左岸谷肩堆积体监测资料综合分析报告[R]. 成都:中国水电顾问集团成都勘测设计研究院,2011.(HydroChina Chengdu Corporation Engineering. Comprehensive analysis report of cavern and slop monitoring date,Xiluodu hydropower project,Jinsha River,part 4:comprehensive analysis report of the monitoring date,the left abutment debris[R]. Chengdu:HydroChina Chengdu Corporation Engineering,2011.(in Chinese))
[2]
徐湘涛,汪家林,黄润秋. 紫坪铺水利枢纽工程左岸坝前堆积体变形破坏机制研究[J]. 岩石力学与工程学报,2008,27(增1):2 642-2 650.(XU Xiangtao,WANG Jialin,HUANG Runqiu. Research on deformation and failure mechanism of the talus slope located at the left riverbank ahead of the dam of Zipingpu hydraulic project[J]. Chinese Journal of Rock Mechanics and Engineering,2008,27(Supp.1):2 642-2 650.(in Chinese))
[3]
朱维申,张玉军,邱祥波. 小湾水电站坝前堆积体三维有限元加固分析[J]. 岩石力学与工程学报,2000,19(4):459-463.(ZHU Weishen,ZHANG Yujun,QIU Xiangbo. 3D finite element analyses of reinforcing schemes with presstressed anchors for deposit body[J]. Chinese Journal of Rock Mechanics and Engineering,2000,19(4):459-463.(in Chinese))
[4]
张 玉,徐卫亚,石 崇,等. 争岗滑坡堆积体稳定性及治理措施研究[J]. 岩土工程学报,2010,32(9):1 470-1 478.(ZHANG Yu,XU Weiya,SHI Chong,et al. Stability and treatment of Zhenggang landslide accumulation mass[J]. Chinese Journal of Geotechnical Engineering,2010,32(9):1 470-1 478.(in Chinese))
[5]
陈静曦,章 光,袁从华,等. 顺层滑移路堑边坡的分析和治理[J]. 岩石力学与工程学报,2002,21(1):48-51.(CHEN Jingxi,ZHANG Guang,YUAN Conghua,et al. Analysis and treatment of bedding-slip cut slope[J]. Chinese Journal of Rock Mechanics and Engineering,2002,21(1):48-51.(in Chinese))
[6]
王乐华,郭永成,韩 梅. 削坡减载法在边坡稳定治理中应用[J]. 三峡大学学报:自然科学版,2009,31(4):57-60.(WANG Lehua,GUO Yongcheng,HAN Mei. Applicationof cutting slope and unloading method to slope stability treatment[J].Journal of China Three Gorges University:Natural Sciences,2009,31(4):57-60.(in Chinese))
樊 东. 溪洛渡水电站左岸谷肩堆积体开挖边坡变形机制分析[硕士学位论文][D]. 成都:成都理工大学,2008.(FAN Dong.Mechanism analysis on deformation of excavation slope on the left bank accumulation body of Xiluodu hydropower station[M. S. Thesis][D].Chengdu:Chengdu University of Technology,2008.(in Chinese))
[9]
中国水电顾问集团成都勘测设计研究院. 左岸谷肩堆积体处理工程验收设计报告[R]. 成都:中国水电顾问集团成都勘测设计研究院,2011.(HydroChina Chengdu Corporation Engineering,Design and Research Institute. Acceptance and design report of the left abutment debris,Xiluduo hydropower station[R]. Chengdu:HydroChina Chengdu Corporation Engineering,2011.(in Chinese)