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Two-dimensional numerical tunnel model using a Winkler-based beam element and its application into tunnel monitoring systems

机译:基于Winkler梁单元的二维隧道数值模型及其在隧道监测系统中的应用

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Infrastructure including public facilities has become ubiquitous. Remote measurement instruments based on automatic or real-time-oriented methods also substitute for the conventional tunnel measurement approach, and thereupon the requirements for efficient measurement and analysis processes on examining civil structures are increasingly needed. With the New Austrian Tunneling Method, in particular, huge amounts of measurement data are processed to estimate the safety of a tunnel support system under construction and operation. Therefore, the analysis model for a tunnel monitoring system ought to be lighter and faster. For this reason, this study developed a two-dimensional tunnel analysis model to substitute for the conventional model (the beam-spring model), and proposed an application of the model to a tunnel monitoring system. In the proposed model, Winkler-based beam elements were applied as an alternative to beam and spring elements. A process is also proposed to determine the ground state of the Winkler-based beam element. This process is related to simulation of the ground resistance loss in tensile ground areas. Four examples were examined to verify the model: one finite beam on tensionless foundation (Example 1); two circular tunnels (Examples 2 and 3); and one horseshoe-shape tunnel (Example 4). Numerical analysis was implemented with a specific code which developed using finite element method. Comparing the numerical results with those of the corresponding beam-spring models, in Example 1, the convergence rate of the proposed model was at least fourth times. In other examples, the results of the proposed model showed a nearly perfect agreement with those of the beam-spring model, whereas the computational efficiency of the proposed model was superior by twofold. Thus, our results suggest that the use of Winkler-based elements in a tunnel model could help enhance the performance of tunnel measurement systems.
机译:包括公共设施在内的基础设施已无处不在。基于自动或实时方法的远程测量仪器也替代了传统的隧道测量方法,因此,对检查土木结构的有效测量和分析过程的要求也越来越高。特别是使用新奥地利隧道方法,将处理大量测量数据,以估算正在建设和运营中的隧道支撑系统的安全性。因此,隧道监控系统的分析模型应该更轻,更快。因此,本研究开发了一种二维隧道分析模型来代替常规模型(梁弹簧模型),并提出了该模型在隧道监测系统中的应用。在提出的模型中,基于Winkler的梁单元被用作梁和弹簧单元的替代方案。还提出了一种确定基于Winkler的梁单元的基态的过程。此过程与模拟拉伸地面区域中的接地电阻损耗有关。检查了四个实例以验证模型:无张力基础上的一个有限梁(实例1);两个圆形隧道(示例2和3);一条马蹄形隧道(示例4)。数值分析是通过使用有限元方法开发的特定代码进行的。将数值结果与相应的梁弹簧模型的数值结果进行比较,在示例1中,所提出模型的收敛速度至少为第四倍。在其他示例中,所提出的模型的结果显示出与梁弹簧模型的结果几乎完美的一致性,而所提出的模型的计算效率却提高了两倍。因此,我们的结果表明,在隧道模型中使用基于Winkler的元素可以帮助提高隧道测量系统的性能。

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