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隧道建设(中英文) ›› 2010, Vol. 30 ›› Issue (S1): 45-52.

• 研究与探索 • 上一篇    下一篇

以修正强制变形法分析隧道耐震能力之探讨

黄俊鸿,  卢志杰,  吕昱达   

  1. 中央大学土木工程学系,中坜
  • 收稿日期:2010-06-12 出版日期:2010-08-14 发布日期:2010-08-25
  • 作者简介:黄俊鸿(1960—),男,1990台湾大学土木工程博士,现任中央大学土木系教授, Email:hwangjin@cc.ncu.edu.tw。

Assessing Tunnel Seismic Capacity Using
Modified Racking Deformation Method

HUANG  Dun-Hong,   Lei-Zhi-Jie,   Lv-Yu-Da   

  1. National Central University, Jhongli
  • Received:2010-06-12 Online:2010-08-14 Published:2010-08-25

摘要:

提出一种分析隧道耐震能力之拟静态修正强制变形法,此法在包含隧道结构在内之地盘模型边界施加强制之剪应变,监测隧道结构之受力与变形,逐步加大剪应变,直到隧道结构破坏,再将破坏时之剪应变与地动速度进行转换,即可评估隧道之耐震能力。相较于复杂之动力分析方法,此法简单、快速、实用,并具有一定之可靠度,适合工程实务之用。惟应用本分析方法,下列数值要点,需注意并加以探讨;1)地盘领域需取多大;2)施加剪应变的型式与施加速率;3)隧道与地盘接口的影响;4)地盘塑性行为的影响等。首先提出修正强制变形法之分析流程,再与弹性地之圆形隧道解析解进行比较,证明数值分析方法正确无误后,再针对上述数值分析要点摘要研究结果,提出具体建议,以供使用此类分析方法的工程师参考。

关键词: 耐震能力, 强制变形法, 数值分析

Abstract:

This paper proposes a new modified crosssection racking deformation (MCSRD) method to assess tunnel seismic capacity. It is a quasistatic approach that imposes a prescribed seismic shear strain to the boundaries of a ground domain where an underground structure has been constructed. The modified method simulates seismic action on the underground structures, and the seismic interaction between the underground structure and surrounding ground can be automatically taken into account by numerical program. Based on the method, we can quickly assess the seismic capacities of the underground structures as compared to the complicated dynamic time history analysis. However, although the method is relatively simple and efficient, there are several numerical points that have to be addressed. These points include: (1) how far is the suitable boundary distance to the structure, (2) the types of imposed shear strain on boundary and the shear strain rate, (3) the effect of interface between ground and tunnel lining, and (4) the influence of plastic behavior of ground. To this end, the research performed a series of numerical studies to clarify the effects of the above numerical points. At the beginning of this paper, the approach for assessing seismic capacity of underground structure based on the MCSRD method is introduced. Then, a comparison between the analytical results of a circular tunnel and the numerical solutions is made to validate the used numerical program. Subsequently, numerical studies aimed to the above numerical points are performed to find out some suggestions so as to help engineers more correctly use the MCSRD method in their design work.

Key words: seismic capacity, racking deformation method, numerical analysis