纵波和横波作用下隧道衬砌内力分析:解析解和准静力数值方法

Rouhollah Basirat
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引用次数: 0

摘要

本文采用解析法和拟静力法分析了隧道在P波和S波作用下的响应。第一步,修正爱因斯坦和施瓦茨的方法,计算p波作用下隧道衬砌内力(TLIFs)。其次,在无滑移(NS)和全滑移(FS)两种极端接触界面条件下,对S波和p波下的TLIFs进行了全面比较。最后,通过准静态有限元数值模拟研究了中间层的影响。结果表明:纵波作用下的轴向力最大值均大于横波作用下的轴向力最大值;同时,纵波作用下的弯矩和剪力量在横波和纵波作用下几乎是纵波作用下的两倍。一般情况下,弱夹层会导致最大轴向力减小,且在弱夹层随隧道放置范围内的轴向力值也会减小。与均匀介质相比,增大了最大弯矩和最大剪力。在S波和p波作用下,低厚度的弱夹层会导致不可预测的行为。综上所述,不同刚度层的存在对横波和S波作用下隧道衬砌的TLIFs有显著影响,增加了隧道衬砌动力分析的复杂性。因此,应分别在NS和FS条件下进行模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of tunnel lining internal forces under the influence of S and P-waves: An analytical solution and quasi-static numerical method
This paper employs analytical and pseudo-static approaches to analyze the tunnel response under the compression (P) and shear (S) waves. In the first step, Einstein and Schwartz’s method is revised for calculating Tunnel Lining Internal Forces (TLIFs) under P-wave. Next, a comprehensive comparison is performed between TLIFs under S and P-waves in two extreme contact interfaces of no-slip (NS) and full-slip (FS) conditions. Lastly, the effect of the intermediate layer was investigated by quasi-static finite element numerical modeling. The results showed that the maximum value of the axial force under the P-wave exceeds that of the S-wave in both the NS and FS conditions. Also, the amount of bending moment and shear force in both the NS and FS conditions under the S-wave is almost twice the P-wave. In general, the weak interlayer causes a decrease in the maximum axial force and the axial force values in the range of placement of the weak interlayer with the tunnel. Besides, it increases the maximum bending moment and shear force compared to the homogeneous medium. It was also observed that the weak interlayer with low thickness causes unpredictable behavior under S and P-waves. Overall, the presence of a layer with different stiffness led to a significant effect on the TLIFs under S and P-waves and increased the complexity of the dynamic analysis of tunnel lining. Therefore, it should be simulated separately under NS and FS conditions.
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