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Fractional viscoelastic analytical solution for the ground displacement of a shallow tunnel based on a time-dependent unified displacement function

机译:基于时变统一位移函数的浅埋隧道地震动分形粘弹性解析解

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摘要

A time-dependent unified displacement function expressed by a Fourier series is used as the displacement boundary condition of the tunnel cross-section (BCTC). Abel element expressed by the fractional differential is adopted to reflect the rheological behaviours of the surrounding rock. Using Laplace transform and the inverse transformation, the relaxation modulus of the Fractional Generalized Kelvin constitutive model for one-dimensional (1D) is obtained. The effects of the fractional order and viscous material parameters on the relaxation modulus are analysed. The correspondence principle and complex variable method are adopted to develop the elastic analytical solution into the fractional viscoelastic analytical solution of the ground displacement. Two factors are considered to capture the time effect of ground deformation: a time-dependent displacement BCTC and time-dependent mechanical parameters. A parameter study is conducted to investigate the time effect of the ground displacement. The deformation parameters of the tunnel cross-section are first calibrated by a part of the field data for the Longdong tunnel and Gaoqiao tunnel. Based on the calibrated model, the proposed method can well predict ground displacement due to the time effect.
机译:使用傅里叶级数表示的时变统一位移函数作为隧道横截面(BCTC)的位移边界条件。采用分数微分表示的Abel元素反映了围岩的流变性。使用拉普拉斯变换和逆变换,获得一维(1D)分数阶广义开尔文本构模型的松弛模量。分析了分数阶和粘性材料参数对松弛模量的影响。采用对应原理和复变量法,将弹性解析解发展为地面位移的分数粘弹性解析解。考虑两个因素来捕获地面变形的时间效应:与时间有关的位移BCTC和与时间有关的机械参数。进行参数研究以研究地面位移的时间效应。首先通过the东隧道和高桥隧道的部分现场数据对隧道截面的变形参数进行校准。在标定模型的基础上,该方法可以很好地预测由于时间效应而引起的地面位移。

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