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西藏扎拉水电站倾倒边坡工程地质特性研究
引用本文:黄振伟,马力刚,雷明. 西藏扎拉水电站倾倒边坡工程地质特性研究[J]. 四川大学学报(工程科学版), 2020, 52(5): 79-88
作者姓名:黄振伟  马力刚  雷明
作者单位:长江勘测规划设计研究有限责任公司,长江勘测规划设计研究有限责任公司,长江勘测规划设计研究有限责任公司
基金项目:国家重点研发计划资助(2018YFC1505006)
摘    要:倾倒边坡是一种已发生变形的特殊边坡,最终可能会发展成滑坡、崩塌等严重地质灾害。倾倒边坡工程地质特性是进行边坡稳定性分析评价和处理方案设计的基础,目前国内相关研究工作尚不深入、不系统,难以满足新时代工程建设和地质灾害防治需要。扎拉水电站拟建于青藏高原西藏境内怒江一级支流玉曲河上,工程区边坡倾倒现象普遍发育,对工程选址和安全运行存在较大影响,区内软岩、硬岩种类多样,倾倒模式齐全,开展相关研究具有典型代表性。从初步调查、详细勘察到专题研究历时数年,详细论证了倾倒边坡岩体的工程地质特性。通过探索并成功运用多项创新技术,解决了倾倒边坡空间范围界定、工程地质分区、抗剪断强度参数取值等工程地质特性研究的难题。采用测绘、洞探、钻探、物探、测试和试验等准确界定了倾倒边坡范围,提出了针对性的适宜的综合勘察方法。以岩体结构、变形破坏类型作为依据,首次将边坡倾倒岩体分为层状弯曲、碎裂拉张、散体坠覆等三个区,并进一步分析了各区在岩层产状、风化特征、声波波速、透水性等方面的差异。根据倾倒边坡的独特性状,提出了倾倒岩体抗剪断强度可在试验值小值平均值~试验值大值平均值范围内进行取值的原则方法,对现行标准规定的取值上限进行了适当拓展。补充研究顺向坡倾倒过程,进一步完善了边坡倾倒变形破坏的力学机制。

关 键 词:倾倒边坡;空间范围;倾倒机制;工程地质分区;地质模式;力学参数
收稿时间:2020-03-21
修稿时间:2020-07-31

Study on the Engineering Geological Characteristics of the Toppling Slope of Zara Hydropower Station in Tibet
HUANG Zhenwei,MA Ligang,LEI Ming. Study on the Engineering Geological Characteristics of the Toppling Slope of Zara Hydropower Station in Tibet[J]. Journal of Sichuan University (Engineering Science Edition), 2020, 52(5): 79-88
Authors:HUANG Zhenwei  MA Ligang  LEI Ming
Affiliation:Changjiang survey,planning,design and Research Co.,Ltd,Changjiang survey,planning,design and Research Co.,Ltd,Changjiang survey,planning,design and Research Co.,Ltd
Abstract:Toppling slope is a kind of special slope which has been deformed, and may eventually develop into serious geological disasters such as landslide and collapse. The engineering geological characteristics of toppling slope is the basis of slope stability analysis and evaluation and treatment scheme design, At present, the relevant research work in China is not in-depth and systematic, which is difficult to meet the needs of engineering construction and geological disaster prevention and control in the new era. Zara hydropower station is planned to be built on Yuqu River, the first tributary of Nujiang River in Tibet, Qinghai Tibet Plateau, The slope toppling in the project area is generally developed, which has a great influence on the site selection and safe operation of the project, There are various types of soft rock and hard rock in the area, and the toppling mode is complete. It is typical to carry out relevant research. It took several years from preliminary investigation, detailed investigation to special research to demonstrate in detail the engineering geological characteristics of the slope rock mass. Through the exploration and successful application of many innovative technologies, the problems in the study of the engineering geological characteristics, such as the definition of the spatial scope of the toppling slope, the division of the engineering geological area and the value of the shear strength parameters, are solved. By means of Surveying and mapping, hole exploration, drilling, geophysical exploration, testing and testing, the scope of the slope is accurately defined, and the appropriate comprehensive exploration methods are put forward. Based on the rock mass structure and the type of deformation and failure, the dumped rock mass of the slope is divided into three areas for the first time, i.e., layered bending, fragmentation and tension, and falling and covering of loose
Keywords:toppling slope  space scope  toppling mechanism  engineering geological division  geological model  mechanical parameters
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