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A Numerical Study of Seismic Response of Shallow Square Tunnels in Two-Layered Ground

机译:层状浅埋方形隧道地震响应的数值研究

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摘要

In this study, the seismic behavior of a shallow tunnel with square cross section is investigated in a two layered and elastic heterogeneous environment using numerical method. To do so, FLAC finite difference software was used. Behavioral model of the ground and tunnel structure was assumed linear elastic. Dynamic load was applied to the model for 0.2 seconds from the bottom in form of a square pulse with maximum acceleration of 1 m/s2. The interface between the two layers was considered at three different levels of crest, middle, and bottom of the tunnel. The stiffness of the two upper and lower layers was considered to be varied from 10 MPa to 1000 MPa. Deformation of cross section of the tunnel due to dynamic load propagation, as well as the values of axial force and bending moment created in the tunnel structure, were examined in the three states mentioned above. The results of analyses show that heterogeneity of the environment, its stratification, and positioning of the interface of the two layers with respect to tunnel height and the stiffness ratio of the two layers have significant effects on the value of bending moment, axial force, and distortion of tunnel cross-section.
机译:在这项研究中,采用数值方法研究了在具有弹性的两层非均质环境中方形截面浅埋隧道的地震行为。为此,使用了FLAC有限差分软件。假定地下和隧道结构的行为模型为线性弹性。以方脉冲的形式从底部将动态负载施加到模型上0.2秒,最大加速度为1 m / s2。在隧道的波峰,中间和底部的三个不同级别考虑了两层之间的界面。上下两层的刚度被认为在10 MPa至1000 MPa之间变化。在上述三种状态下,研究了由于动态载荷传播而引起的隧道横截面变形,以及在隧道结构中产生的轴向力和弯矩值。分析结果表明,环境的不均匀性,其分层以及两层界面相对于隧道高度和两层的刚度比的位置,对弯矩,轴向力和挠度值都有显着影响。隧道截面变形。

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