欢迎访问现代地质!

现代地质 ›› 2017, Vol. 31 ›› Issue (05): 877-889.

• 川藏铁路沿线重大地质灾害与工程地质问题 • 上一篇    下一篇

川藏铁路沿线及邻区环境工程地质问题概论

郭长宝1,2(), 张永双1,2, 蒋良文3, 石菊松4, 孟文1,2, 杜宇本3, 马春田1   

  1. 1.中国地质科学院 地质力学研究所,北京 100081
    2.国土资源部新构造运动与地质灾害重点实验室,北京 100081
    3.中铁二院工程集团有限责任公司,四川 成都 610031
    4.中国地质调查局,北京 100037
  • 收稿日期:2016-10-12 修回日期:2017-05-10 出版日期:2017-10-10 发布日期:2017-11-06
  • 作者简介:郭长宝,男,博士,副研究员,1980年出生,地质工程专业,主要从事工程地质与地质灾害方面的研究。Email:guochangbao@163.com
  • 基金资助:
    中国地质调查局项目(12120113038000);中国地质调查局项目(DD20160271);国家自然科学基金项目(41402321);科技部科技基础性工作专项(2011FY110100-2);中铁二院科研计划项目(二院科字201303)

Discussion on the Environmental and Engineering Geological Problems Along the Sichuan-Tibet Railway and Its Adjacent Area

GUO Changbao1,2(), ZHANG Yongshuang1,2, JIANG Liangwen3, SHI Jusong4, MENG Wen1,2, DU Yuben3, MA Chuntian1   

  1. 1. Institute of Geomechanics, Chinese Academy of Geological Sciences, Beijing 100081, China
    2. Key Laboratory of Neotectonic Movement and Geohazard, Ministry of Land and Resources, Beijing 100081, China
    3. China Railway Eryuan Engineering Group. Ltd, Chengdu, Sichuan 610031, China
    4. Chinese Geological Survey, Beijing 100037, China
  • Received:2016-10-12 Revised:2017-05-10 Online:2017-10-10 Published:2017-11-06

摘要:

川藏铁路是我国正在规划建设的重要铁路干线之一,是西部大通道的重要组成部分。该铁路线横跨扬子板块、川滇地块、羌塘地块和拉萨地块等大地构造单元,在复杂的地质构造背景条件下,川藏铁路沿线活动断裂、地震和地质灾害极为发育,严重制约着川藏铁路的规划建设。在野外地质调查、钻探、地应力测量和室内测试分析的基础上,对川藏铁路规划建设中可能遇到的活动断裂、高地应力、高地温、岩爆和地质灾害等主要环境工程地质问题进行了论述分析,认为:川藏铁路沿线及邻区发育有54条区域活动断裂,其中对铁路有直接重要影响的全新世活动断裂有17条;研究区内地震活动频繁,约有50%的规划线路位于地震动峰值加速度>0.2 g地区,部分地段>0.4 g,潜在地震风险大;铁路沿线主要的地质灾害类型为崩塌、滑坡和泥石流,地质灾害受活动断裂影响强烈,部分地段发育有高速远程滑坡;川藏铁路沿线构造应力场和地热场复杂,深埋隧道工程建设时容易发生岩爆、软岩大变形和高温热害等工程地质问题。

关键词: 川藏铁路, 活动断裂, 工程地质问题, 地质灾害, 地质选线

Abstract:

The Sichuan-Tibet Railway is one of the most important main railway lines under planned and construction of China, and it is an important part of China western transportation system. However, because the railway passes through several big tectonic units, e.g. the Yangtze plate, Sichuan-Yunnan plate, Qiangtang plate and Lhasa plate, under these complex geological conditions, there are some complex geological problems along the Sichuan-Tibet Railway, such as active faults, earthquakes and other geohazards, and thus the planning and construction of the Sichuan-Tibet Railway are restricted. Based on the field geological investigation, geological drilling, analysis of in-situ stress measurements and laboratory testing, the paper analyzes the main environmental and engineering geological problems along the railway, e.g. active faults, high crustal stress, high geothermal activities, rock burst and geodisasters that might occur in the process of railway construction. And the authors deem that there are 54 regional active faults along the Sichuan-Tibet Railway and its adjacent area, and 17 of them are active faults and have directly important effect on the railway construction; the earthquake is frequent in the study area, and 50% of the planning route is located in the area of seismic peak ground acceleration more than 0.2 g, part of the region more than 0.4 g,so the potential seismic risk is likely to happen; the main geohazards are collapse, landslide and debris flow along the railway, most of them are controlled and affected by active faults, and the long run-out landslides are also developed in this area; the tectonic stress and geothermal field are complicated along the railway, and some serious engineering problems are in high risk in the railway construction, such as rock burst, soft rock’s big deformation, and high geothermal calamity.

Key words: Sichuan-Tibet Railway, active fault, engineering geological problem, geohazard, route optimization

中图分类号: