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On discrepancies between time-dependent nonlinear 3D and 2D finite element simulations of deep tunnel advance: A numerical study on the Brenner Base Tunnel

机译:深隧洞随时间变化的非线性3D和2D有限元模拟之间的差异:Brenner基础隧道的数值研究

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摘要

A numerical study on a stretch of the Brenner Base Tunnel, characterized by high overburden and driven according to the New Austrian Tunneling Method, is presented. At first, a 3D time-dependent nonlinear finite element model is developed, taking into account the construction process, nonlinear material behavior of the surrounding rock mass, and the time-dependent nonlinear material behavior of shotcrete. Next, the prognosis capabilities of a simplified time-dependent 2D model are investigated, since in engineering practice 3D computations are often not feasible due to their computational expense. For this model, a thorough calibration of a particular stress release scheme based on the 3D model is performed, aiming at a good fit of the displacements. Hence, the remaining discrepancies of the response of the two models can be attributed to the simplifying assumptions inherent in the 2D model. The computed displacements are validated by comparison with in situ measurement data. It will be demonstrated that both the 3D model and the calibrated 2D model together with the nonlinear constitutive models allow a good correspondence of the predicted displacements with the measured ones at the tunnel site. However, striking discrepancies are observed for the predicted evolution of the stress state in the shotcrete shell.
机译:提出了以高覆盖层为特征,按照新奥地利隧道法进行驱动的布伦纳基础隧道一段的数值研究。首先,考虑了施工过程,围岩的非线性材料特性以及喷射混凝土的时变非线性材料特性,建立了一个3D时变非线性有限元模型。接下来,研究简化的与时间相关的2D模型的预测能力,因为在工程实践中,由于3D计算的计算量大,因此往往不可行。对于此模型,将基于3D模型对特定的应力释放方案进行彻底的校准,以确保位移的良好拟合。因此,两个模型的响应的其余差异可以归因于2D模型固有的简化假设。通过与现场测量数据进行比较来验证计算的位移。将会证明,无论是3D模型还是经过校准的2D模型,再加上非线性本构模型,都可以使隧道现场的预测位移与实测位移具有良好的对应关系。但是,对于喷射混凝土壳中应力状态的预测演变,观察到了惊人的差异。

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