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Estimation of the excavation damage zone in TBM tunnel using large deformation FE analysis

机译:使用大变形Fe分析估计TBM隧道挖掘机损伤区

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This paper aims to estimate the range of the excavation damaged zone (EDZ) formation caused by the tunnel boring machine (TBM) advancement through dynamic three-dimensional large deformation finite element analysis. Large deformation analysis based on Coupled Eulerian-Lagrangian (CEL) analysis is used to accurately simulate the behavior during TBM excavation. The analysis model is verified based on numerous test results reported in the literature. The range of the formed EDZ will be suggested as a boundary under various conditions - different tunnel diameter, tunnel depth, and rock type. Moreover, evaluation of the integrity of the tunnel structure during excavation has been carried out. Based on the numerical results, the apparent boundary of the EDZ is shown to within the range of 0.7D (D: tunnel diameter) around the excavation surface. Through series of numerical computation, it is clear that for the rock of with higher rock mass rating (RMR) grade (close to 1st grade), the EDZ around the tunnel tends to increase. The size of the EDZ is found to be direct proportional to the tunnel diameter, whereas the depth of the tunnel is inversely proportional to the magnitude of the EDZ. However, the relationship between the formation of the EDZ and the stability of the tunnel was not found to be consistent. In case where the TBM excavation is carried out in hard rock or rock under high confinement (excavation under greater depth), large range of the EDZ may be formed, but less strain occurs along the excavation surface during excavation and is found to be more stable.
机译:本文旨在通过动态三维大变形有限元分析来估计由隧道镗床(TBM)推进引起的挖掘损坏区域(EDZ)形成的范围。基于耦合Eulerian-Lagrangian(CEL)分析的大变形分析用于精确模拟TBM挖掘过程中的行为。根据文献中报告的许多测试结果验证了分析模型。形成的EDZ的范围将被建议为各种条件下的边界 - 不同的隧道直径,隧道深度和岩石类型。此外,已经进行了对挖掘过程中隧道结构的完整性的评估。基于数值结果,EDZ的表观边界显示在挖掘表面周围0.7d(d:隧道直径)的范围内。通过一系列数值计算,很明显,对于具有更高岩石质量额定值(RMR)等级(接近1级)的岩石,隧道周围的EDZ趋于增加。发现EDZ的尺寸与隧道直径相对于直接成比例,而隧道的深度与EDZ的幅度成反比。然而,未发现EDZ的形成与隧道稳定性之间的关系是一致的。在高限制(在更大深度的挖掘)在硬岩或岩石中进行TBM挖掘的情况下,可以形成大范围的EDZ,但在挖掘过程中沿着挖掘表面发生较少的应变,并且发现更稳定。

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