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Dynamic Stress Analysis of a Circular-Lined Tunnel in Composite Strata-SH Wave Incidence

机译:复合地层脉冲发射中圆形隧道隧道动态应力分析

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摘要

It is necessary to study the problem of seismic wave scattering in composite stratum for tunnel engineering because the existence of composite strata will make the stress of tunnels more complicated during earthquakes. In this thesis, a series solution of the scattering wave field of the composite strata and lining is obtained using the complex function method. According to the stress and displacement boundary conditions between the composite stratum and the lining, a series of equations are established and are solved by means of Fourier transformation and finite term truncation, and the calculation errors are also discussed. Through programming calculations, the dynamic stress concentration factor (DSCF) of circular tunnels in the two types of composite strata, “hard-over-soft” and “soft-over-hard,” is analyzed when SH waves propagate, and certain conclusions on the scattering of SH waves that are distinguished from the case of single homogeneous layers are reached. The research in this article reveals some phenomena. For the Q345 steel lining in the calculation examples, it is found in this paper that increasing the thickness of the lining is effective to reduce the influence of the DSCF. But, for C30 concrete, increasing the thickness of the lining reduces the DSCF of the outer surface while increasing the DSCF of the inner surface.
机译:有必要研究隧道工程复合层中地震波散射的问题,因为复合地层的存在将使隧道在地震中更复杂的应力。在本文中,使用复杂的功能方法获得复合层和衬里的散射波场的串联解决方案。根据复合层和衬里之间的应力和位移边界条件,建立了一系列方程,并通过傅里叶变换和有限术语截断解决,并且还讨论了计算误差。通过编程计算,当SH波传播时,分析了两种类型的复合地层中的圆形隧道的动态应力集中因子(DSCF),“硬质柔软”和“软硬”,以及某些结论达到与单一均匀层的情况不同的SH波的散射。本文的研究揭示了一些现象。对于计算实施例的Q345钢衬里,在本文中发现,增加衬里的厚度有效地减少DSCF的影响。但是,对于C30混凝土,增加衬里的厚度减小了外表面的DSCF,同时增加了内表面的DSCF。

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