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Nonlinear analysis of NATM tunnel construction with the boundary element method

机译:用边界元法对NATM隧道施工进行非线性分析

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This paper presents a novel approach to the simulation of NATM tunnel construction using the Boundary Element Method (BEM) as principal numerical method. This new approach has the advantage that only the excavation surface, the possible plastic zones and the tunnel lining have to be discretised. The whole rock mass is represented by the BEM whereas the Finite Element Method (FEM) is used to represent the tunnel lining only. Thus, a general coupling strategy for coupling three-dimensional boundary elements with shell finite elements (shotcrete) and beam finite elements (steel arches) is presented. To achieve realistic results the effect of hydration of the shotcrete and yielding of the steel arches is considered in the excavation process. Furthermore, the nonlinear rock behaviour is modelled more realistically by using a powerful hierarchical constitutive model which considers a large range of rock materials. The combination of these ideas results in higher user-friendliness and efficiency. Some verification tests and practical applications in tunnelling are presented.
机译:本文提出了一种新的方法,以边界元法(BEM)为主要数值方法,对NATM隧道施工进行了仿真。这种新方法的优点在于,仅需离散挖掘表面,可能的塑料区域和隧道衬砌即可。整个岩体由BEM表示,而有限元法(FEM)仅用于表示隧道衬砌。因此,提出了将三维边界元与壳有限元(喷浆混凝土)和梁有限元(钢拱)耦合的通用耦合策略。为了获得现实的结果,在开挖过程中考虑了喷射混凝土的水化作用和钢拱的屈服效果。此外,通过使用功能强大的层次本构模型来考虑岩石材料的广泛范围,可以对岩石的非线性行为进行更实际的建模。这些想法的结合带来了更高的用户友好性和效率。介绍了一些验证测试和在隧道中的实际应用。

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