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3D Numerical Simulation of Shield Tunnel Subjected to Swelling Effect Considering the Nonlinearity of Joint Bending Stiffness

机译:3D考虑关节弯曲刚度非线性肿胀隧道的3D数值模拟

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摘要

In this paper, the authors developed a three dimensional shell-spring numerical model of a shield tunnel, in which the elastic shell elements were adopted to model the segments and the spring models were used for the simulation of the segmental joints. The highlight of this research is that the non-linearity of the joint bending stiffness was taken into consideration, which was first determined through the numerical simulation by using a refined 3D continuum model of the segment-joint structure. The automatic iteration of the joint bending stiffness was achieved through programming with the ANSYS ADPL software. Based on a specific engineering example, a 3D continuum-shell-spring model was established to analyze the internal forces of shield tunnel segmental linings subject to swelling soils. The developed numerical model and its application in the analysis of the internal forces of shield tunnel segmental linings in swelling ground will provide useful reference and guidance for the numerical calculation in similar engineering projects in future.
机译:在本文中,作者开发了一种屏蔽隧道的三维壳弹簧数值模型,其中采用弹性壳体元件来模拟段,并且弹簧模型用于模拟节段接头。本研究的亮点是考虑关节弯曲刚度的非线性,首先通过使用分段 - 关节结构的精制3D连续模型来通过数值模拟确定。通过用ANSYS ADPL软件编程来实现关节弯曲刚度的自动迭代。基于特定的工程学例,建立了3D连续壳弹簧模型,分析屏蔽隧道节段衬里的内部力,受溶胀土壤。发达的数值模型及其在膨胀地面屏蔽隧道节段衬里内部力分析中的应用将为未来类似工程项目中数值计算提供有用的参考和指导。

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