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Theoretical study of the dynamic response of a circular lined tunnel with an imperfect interface subjected to incident SV-waves

机译:圆形隧道与事件SV波的不完美界面动态响应的理论研究

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摘要

Theoretical analysis is used to predict the dynamic response of a circular lined tunnel with an imperfect interface to plane SV-waves. The linear spring model is introduced to depict the imperfect interface between the rock mass and the lining. The expressions for the stress and displacement of the rock mass and the lining are then derived based on the wave function expansion method and the linear spring model. The dynamic stress concentration factor (DSCF) of the rock mass and lining is systematically discussed in two cases by studying its basic parameters, including the dimensionless wavenumber, the interface spring constants, and the lining thickness. The results show that the imperfect interface has a prominent effect on dynamic stress concentration. The maximum values of DSCF generated by SV-waves in the rock mass and the lining are larger than those generated by the P-waves. Additionally, the thick lining structure and tight adhesion of the lining to the rock mass are conducive to tunnel structure stability. It is suggested that the support should be strengthened at the position of the dynamic stress concentration, and the lining and the rock mass should be combined as closely as possible during the construction process.
机译:理论分析用于预测圆形衬砌隧道的动态响应与平面SV波的不完美接口。引入线性弹簧模型以描绘岩体与衬里之间的不完美界面。然后基于波函数膨胀方法和线性弹簧模型导出用于岩体和衬里的应力和位移的表达。通过研究其基本参数,包括无量纲波数,界面弹簧常数和衬里厚度,在两种情况下系统地讨论了岩体和衬里的动态应力集中因子(DSCF)。结果表明,不完美的界面对动态应力集中具有显着影响。由岩石质量和衬里中的SV-波产生的DSCF的最大值大于由P波产生的。另外,厚的衬里结构和衬里到岩体的紧密粘附有利于隧道结构稳定性。建议应在动态应力集中的位置加强支撑,衬里和岩体应在施工过程中尽可能地紧密结合。

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