Mechanical responses of underground carriageway structures due to construction of metro tunnels beneath the existing structure: A case study

Xin Han, Fei Ye, Xingbo Han, Chao Ren, Jing Song, Ruliang Zhao
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Abstract

To understand the mechanical response pattern of the existing structure and ground due to the construction of metro tunnels underneath, the finite difference method is adopted to study the torsional deformation and stress variation of the existing structure and the effect of underground carriageway structures on the surface subsidence. The curves of the maximum differential subsidence, torsion angle, and distortion of the cross-section of the existing structure show two peaks in succession during traversing of two metro tunnels beneath it. The torsion angle of the existing structure changes when the two tunnels traverse beneath it in opposite directions. The first traversing of the shield tunnel mainly induces the magnitude variation in torsional deformation of the existing structure, but the second traversing of the subsurface tunnel may cause a dynamic change in the magnitude and form of torsional deformation in the existing structure. The shielding effect can reduce the surface subsidence caused by metro tunnel excavation to a certain extent, and the development trend of subsidence becomes slower as the excavation continues.

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地下车行道结构因在现有结构下修建地铁隧道而产生的机械响应:案例研究
为了解地下修建地铁隧道对既有结构和地面的力学响应模式,采用有限差分法研究了既有结构的扭转变形和应力变化,以及地下车行道结构对地表沉降的影响。现有结构的最大差异沉降、扭转角和横截面变形曲线在穿越其下方的两条地铁隧道时连续出现两个峰值。当两条隧道以相反的方向在既有结构下方穿越时,既有结构的扭转角会发生变化。盾构隧道的第一次穿越主要引起现有结构扭转变形的幅度变化,但地下隧道的第二次穿越可能会引起现有结构扭转变形幅度和形式的动态变化。屏蔽效应可在一定程度上减小地铁隧道开挖引起的地表沉降,且随着开挖的继续,沉降的发展趋势会越来越慢。
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Issue Information Two-year growth of Deep Underground Science and Engineering: A perspective Acknowledgment of reviewers A review of mechanical deformation and seepage mechanism of rock with filled joints Issue Information
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