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锦屏一级水电站左岸抗力体基础处理洞室群围岩稳定性分析
引用本文:王胜,黄润秋,祝华平.锦屏一级水电站左岸抗力体基础处理洞室群围岩稳定性分析[J].探矿工程,2009,36(9):72-76.
作者姓名:王胜  黄润秋  祝华平
作者单位:[1]成都理工大学地质灾害防治与地质环境保护国家重点实验室,四川成都610059; [2]中国水电顾问集团成都勘测设计研究院,四川成都610072
基金项目:致谢:本文得到了成都理工大学“锦屏一级施工地质专题”项目组的大力支持,在此向项目组的各位老师和同学表示感谢.另外,感谢中国水电顾问集团成都勘测设计研究院对作者工作的支持!
摘    要:通过对锦屏一级水电站左岸抗力体五层洞室岩体结构特征详细调查,采用水电围岩分类的方法对抗力体洞室进行围岩分类。分类结果表明:抗力体洞室围岩以Ⅲ2类围岩居多,占了50%左右,其次为Ⅳ类,占36%左右,Ⅲ1和Ⅴ类围岩所占比例较少。通过对洞室施工开挖失稳破坏现象的调查研究,分析了洞室失稳破坏的机制及破坏形式,认为围岩主要的破坏形式为弱面控制型的块体滑移塌落。对洞室监测资料的分析结果表明,在目前的支护条件下,总体监测未见异常,整体上基础处理洞室监测状态稳定。但F5、F42-9断层及煌斑岩脉等软弱部位应力及变形缓慢增加,需要加强监测。最后根据分析结果提出了建议。

关 键 词:抗力体  围岩分类  破坏机制  块体  监测  稳定性
收稿时间:2009/6/8 0:00:00
修稿时间:2009/8/17 0:00:00

Analysis on Stability of Surrounding Rock of Underground Chamber Group on Left Bank Resisting Rock of Jinping-I Hydropower
WANG Sheng,HUANG Run-qiu and ZHU Hua-ping.Analysis on Stability of Surrounding Rock of Underground Chamber Group on Left Bank Resisting Rock of Jinping-I Hydropower[J].Exploration Engineering(Drilling & Tunneling),2009,36(9):72-76.
Authors:WANG Sheng  HUANG Run-qiu and ZHU Hua-ping
Institution:WANG Sheng , HUANG Run-qiu , ZHU Hua-ping ( 1. Chengdu University of Technology, Chengdu Sichuan 610059, China; 2. HydroChina Chengdu Engineering Corporation, Chengdu Sichuan 610072, China)
Abstract:By the detailed survey on the structure features of left bank resisting rock of Jinping - Ⅰ hydropower, resisting rock chambers were classified with surrounding rock classification. 50% resisting rock chambers belong to Ⅲ2, about 36% belong to Ⅳ, and the rest belong to Ⅲ 1 and V. By the study on excavating destabilization, analysis was made on the stability-loosing mechanism and the deformation pattern. Weak-plane-controlling block gliding and collapsing were thought to be the main deformation pattern. According to the analysis on the chamber monitoring data, no evidence showed any abnormal; but deformation of F5 , F42-9 faults and lamprophyre dyke were slowly occurred. The paper put forward the construction proposal.
Keywords:resisting rock  surrounding rock classification  destruction mechanism  block  monitoring  stability
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