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深圳市东水西调输水隧洞工程构造活动性分析
引用本文:孙叶,赵娴,徐祥银,刘霆,谭成轩,扬耕,阎全人,叶维国,杨世平,何广海,李淑芬,孙东洵.深圳市东水西调输水隧洞工程构造活动性分析[J].地质力学学报,2000,6(1):59-68.
作者姓名:孙叶  赵娴  徐祥银  刘霆  谭成轩  扬耕  阎全人  叶维国  杨世平  何广海  李淑芬  孙东洵
作者单位:1. 中国地质科学院城市与工程场地稳定性研究中心, 河北燕郊 056201;
基金项目:中国科学院资助项目,地质力学开放研究实验室基金,49802017,dlkf-9803,,
摘    要:在对深圳断裂带构造活动性演化分析的基础上,配合现今构造应力场平面和三维数值模拟,定量计算输水隧洞不同地段轴向与最大水平主压应力方向的夹角、深圳断裂带与隧洞交汇部位的现今活动量级范围以及深埋隧洞地段现今构造应力状态,为深圳市东水西调输水隧洞工程设计和施工提供依据。 

关 键 词:深圳断裂带    输水隧洞工程    构造活动性
文章编号:1006-6616(2000)01-0059-10
收稿时间:1999/1/11 0:00:00
修稿时间:1999-01-11

AN ANALYSIS OF THE ACTIVITY OF THE SHENZHEN FAULT ZONE IN THE TUNNEL ENGINEERING IN SHENZHEN MUNICIPALITY
SUN Ye,ZHAO Xian,XU Xiang-ying,LIU Ting,TAN Cheng-xuan,YANG Geng,YAN Quan-ren,YE Wei-guo,YANG Shi-ping,HE Guang-hai,LI Shu-fen and SUN Dong-xun.AN ANALYSIS OF THE ACTIVITY OF THE SHENZHEN FAULT ZONE IN THE TUNNEL ENGINEERING IN SHENZHEN MUNICIPALITY[J].Journal of Geomechanics,2000,6(1):59-68.
Authors:SUN Ye  ZHAO Xian  XU Xiang-ying  LIU Ting  TAN Cheng-xuan  YANG Geng  YAN Quan-ren  YE Wei-guo  YANG Shi-ping  HE Guang-hai  LI Shu-fen and SUN Dong-xun
Institution:1. Urban and Engineering Site Stability Assessment Center, CAGS, Yanjiao, Hebei 056201, China;2. Institute of Geomechanics, CAGS, Beijing 100081, China;3. Shenzhen Geological Bureau, Shenzhen 518029, China;4. Shenzhen Planning and Designing Institute of Water Resources, Shenzhen 518000, China
Abstract:After an analysis of the evolution of the activity of the Shenzhen fault zone numerical simulations of both plane-and 3-D present tectonic stress fields are made to calculate quantitatively the angle enclosed between the maximum horizontal principal compressive stress direction and the tunnel axis at different sections of the Shenzhen water diversion tunnel.The displacements of the faults at the intersections between them and the tunnel and the possible stress states of four deep buried sectors of the tunnel are also obtained by the modeling.The results will provide data for the design of the planned tunnel construction.
Keywords:Shenzhen fault zone  diversion tunnel engineering  tectonic activity
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