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Comparison of rectangular and circular bored twin tunnels in weak ground

机译:弱地面矩形和圆形双隧道的比较

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摘要

The recent innovation of a rectangular tunnel boring machine (TBM), and its use in the Hongzhuan Road tunnel underpass by the China Railway Engineering Group (CREG), has revitalized shallow depth soft soil tunneling. This paper presents the findings of a numerical study using PLAXIS to determine the surface settlements and moments produced in tunnel linings for circular and rectangular twin tunnels. The effects of the relative positions of twin tunnels, critical distances, volume losses, depths of burial, and tunnel sizes for both circular and rectangular tunnels are the key parameters of this investigation. The results indicate that rectangular tunnels are suitable for shallow depths in weak ground as they have lesser settlement compared with circular tunnels. This is crucial for tunneling beneath important structures such as railway lines and existing roads. However, the maximum bending moment produced in the rectangular tunnel lining is higher than that for circular tunnels. The use of rectangular TBMs is an unconventional method in modern day tunneling; however, the analysis in this project recommends that tunnel industry engineers consider this method for shallow depth weak ground tunneling.
机译:矩形隧道掘进机(TBM)的最新创新,以及中铁工程集团(CREG)在红砖路隧道地下通道中的使用,使浅层软土隧道得以重生。本文介绍了使用PLAXIS进行数值研究的结果,以确定圆形和矩形双隧道的隧道衬砌中的地表沉降和弯矩。圆形和矩形隧道的孪生隧道的相对位置,临界距离,体积损失,埋葬深度以及隧道尺寸的影响是这项研究的关键参数。结果表明,与圆形隧道相比,矩形隧道沉降量较小,因此适合在弱土中的浅层深度使用。这对于在重要结构(如铁路线和现有道路)下面的隧道掘进至关重要。但是,矩形隧道衬砌中产生的最大弯矩高于圆形隧道。在现代隧道中,矩形TBM的使用是一种非常规的方法。但是,该项目中的分析建议隧道行业工程师考虑将这种方法用于浅深度弱地面隧道。

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