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隧道建设(中英文) ›› 2007, Vol. 27 ›› Issue (增刊): 150-154.DOI: A

• 研究与探索 • 上一篇    下一篇

迂回隧道开挖对导坑隧道之影响探讨

陈志南, 贾儒龙, 赖正树, 柯志青   

  1. 1.台湾科技大学营建系; 2.平卡迪贸易有限公司
  • 收稿日期:2007-06-12 出版日期:2007-08-10 发布日期:2010-04-20
  • 作者简介:陈志南|106台北市基隆路四段43号|台湾科技大学营建系。

Studies of the Influence of Pilot Tunnel Due to Bypass Tunneling

CHEN Zhi-Na, GU Ru-Long, LAI Zheng-Shu, KE Zhi-Jing   

  1. 1.Graduate Student of National Taiwan University of Science and technology, Taiwan;
    2.Pingkadi trade Co.,Ltd., Taiwan
  • Received:2007-06-12 Online:2007-08-10 Published:2010-04-20

摘要:

对于长大隧道而言,全断面隧道钻掘机(TBM)钻掘如施工顺利,可有效缩短工期,惟当遇及特殊地质状况时,亦可能导致TBM受困停工,此时采用迂回隧道绕至TBM机头前方解困是常用之解困方式之一,但迂回隧道挖掘对导坑隧道之影响机制不明,值得探讨。故本研究以雪山隧道导坑第十次TBM被埋受困之情况为仿真对象,将导坑视为本研究交叉区段之导坑隧道,利用三维程序FLAC3D探讨迂回隧道施作对导坑隧道之影响。导坑隧道为圆形断面(直径D=5m)、迂回隧道为方形断面(B×B=2m×2m)开挖。依本研究范围内所得之结论如下:由导坑隧道向外垂直破孔处左右两侧区域呈现应力增加趋势,其加压幅度可达初始应力10%~22%。45°破孔进入导坑隧道之锐角侧壁处在破孔后σ1、σ2、σ3分别增加47%、40%、-33.5%,与90°直交侧壁处之调整为20%、18%、6%要高出不少。另外钝角侧壁处其支撑承受之岩压在破孔后σ1、σ2、σ3分别增加21%、11%、-45%。

Abstract:

The construction period for long tunnel can be effectively reduced if tunnel boring machine (TBM) works well.  However, TBM also can be embedded or out of work if complicated geological structure is encountered, and bypass tunneling is often used for helping TBM restart. The influence of bypass to pilot tunnel are unclear and worthy to investigate . The 10th TBM embedded case in Hsuehan pilot tunnel is simulated by using the three dimensional numerical code FLAC3Din the study. Pilot tunnel is circular with diameter 5m and bypass tunnel is square with width 2m.
   The analytic results show that compression zone was developed around the sidewall of breakage boundary when breakage tunneling is perpendicular to pilot tunnel, and the stress increment can be 10% to 22% higher than prior breakage. The stress increment of maximum, intermediate, and minimum principal stresses σ1、σ2、σ3 of perpendicular breakage in the studying case is(20%、18%、6%).  The two side breakage stresses of 45° inclined bypass tunnel entering pilot tunnel are different. The stress increment of σ1、σ2、σ3 of breakage in the studying case are 47%、40%、-33.5%)respectively at the acute sidewall, and (21%、11%、-45%)at the obtuse sidewall . These results can be provided engineers a reference for intersection support design.

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