| 注册
首页|期刊导航|岩土力学|双线平行盾构隧道施工引起的三维土体变形研究

双线平行盾构隧道施工引起的三维土体变形研究

魏纲 庞思远

岩土力学Issue(9):2562-2568,7.
岩土力学Issue(9):2562-2568,7.

双线平行盾构隧道施工引起的三维土体变形研究

Study of three-dimensional soil deformation caused by double-line parallel shield tunnel construction

魏纲 1庞思远1

作者信息

  • 1. 浙江大学城市学院 土木工程系,杭州 310015
  • 折叠

摘要

Abstract

Based on the two-dimension calculation approaches of soil deformation caused by ground loss in double-line parallel shield tunnel (DLPST) construction, the three-dimensional calculation approaches of soil deformation caused by DLPST are established. Altering equations of ground loss rate are established by choosing different longitudinal locations as variables. With consideration of the impact of the first shield construction on the second one’s, the total soil deformation induced by DLPST is obtained by calculating soil settlement caused by both the first and the second shield tunnel construction. The proposed method is able to calculate the deep soil settlement and horizontal soil displacement, which can reflex the three-dimension soil deformation relatively precisely. The result indicates that the calculated value by the proposed method almost coincides with measured value. As the distance to excavation face x increases, the soil settlement volume tends to increase, and remains stable when x=-40 m approximately in the end. The maximum of total settlement volume increases as the excavation distance between the first and the second shield shortens. With the depth of z increasing, the soil settlement increases slightly, but the settlement slot width slightly reduces. The maximum settlement tends to decrease along with two article tunnel axis level distance L increasing, and the settlement curve shape will slowly change from V-shape into W-shape which is not conform to the normal distribution.

关键词

双线平行盾构隧道/土体变形/土体损失/三维解析解

Key words

double-line parallel shield tunnel/soil deformation/ground loss/three-dimensional calculation approaches

分类

建筑与水利

引用本文复制引用

魏纲,庞思远..双线平行盾构隧道施工引起的三维土体变形研究[J].岩土力学,2014,(9):2562-2568,7.

岩土力学

OA北大核心CSCDCSTPCD

1000-7598

访问量1
|
下载量0
段落导航相关论文