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The effects of existing horseshoe-shaped tunnel sizes on circular crossing tunnel interactions: Three-dimensional numerical analyses

机译:现有马蹄形隧道尺寸对圆形交叉隧道相互作用的影响:三维数值分析

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摘要

Three-dimensional numerical analyses were conducted to study the effects of the ratio of the breadth of an existing horseshoe-shaped tunnel to the diameter of new circular tunnels (B/D) on the interaction of perpendicularly crossing tunnels in sand. Hypoplasticity constitutive soil model with small strain stiffness was adopted in the study. For different cover depths, the computed results revealed that the induced maximum settlement at the centre of an existing tunnel invert is unaffected by its size. The sagging settlement profile along the existing tunnel crown gradually changes into a hogging shape with increasing B/D ratios for smaller cover depth. The mid-plane deformations of the existing tunnel are vertically elongated and horizontally compressed.
机译:进行了三维数值分析,以研究现有的马蹄形隧道的宽度与新的圆形隧道的直径之比(B / D)对垂直交叉的隧道在砂土中的相互作用的影响。本研究采用应变刚度小的低塑性本构土模型。对于不同的覆盖深度,计算结果表明,在现有隧道反演的中心引起的最大沉降不受其尺寸的影响。沿现有隧道顶部的下陷沉降轮廓随着B / D比的增加而逐渐改变为成卷状,以实现较小的覆盖深度。现有隧道的中平面变形在垂直方向上被拉长并在水平方向上被压缩。

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