Response of Semicircular Canyons and Movable Cylindrical Cavities to SH Waves in Anisotropic Half-space Geology

GEOPHYSICS Pub Date : 2024-05-24 DOI:10.1190/geo2023-0598.1
Debao Guo, Jinlai Bian, Yunqiu Song, Yong Yang, Zailin Yang
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Abstract

The development of tunnels or the laying of underground pipelines are essential engineering projects in modern society, and in canyon tunnels and underground pipeline projects, the surface motion and cavity edge motion have been topics of concern in ground vibration problems. In this paper, we investigate the wave scattering problem in an elastic half-space anisotropic medium containing a semicircular canyon and a subsurface movable cylindrical cavity by using the wave function expansion method, the complex function method and the mirror method. By deriving the governing equation and transforming it into the standard form of the Helmholtz equation satisfying the zero-stress boundary condition, we solve the corresponding displacement functions. Introducing a position correction coefficient, the scattered wave field in a half-space anisotropic medium is constructed by the mirror method, which improves the problem of scattered wave source singularity in anisotropic half-space medium. Then, combining the free boundary conditions with a Fourier series expansion method we solve for the unknown coefficients in the equations. The correctness of the method is verified by degenerating it to a classical analytic solution. Finally, using frequency and time domain analysis, we investigate the effects of the relevant parameters on the surface motion| w1|( w), the dynamic stress concentration factor (DSCF) and the displacement amplitude| w2|. The results show that rock anisotropy and the presence of semicircular canyons have a significant effect on the dynamic response of subsurface structures. This not only provides a theoretical basis for practical unlined tunnels or pipeline projects, but can also provide a basis for seismic design of underground structures.
半圆形峡谷和可移动圆柱形空腔对各向异性半空间地质中 SH 波的响应
开发隧道或铺设地下管道是现代社会必不可少的工程项目,而在峡谷隧道和地下管道工程中,地表运动和空腔边缘运动一直是地面振动问题的关注点。本文采用波函数展开法、复变函数法和镜像法研究了包含半圆形峡谷和地下可移动圆柱形空腔的弹性半空间各向异性介质中的波散射问题。通过推导控制方程并将其转化为满足零应力边界条件的亥姆霍兹方程的标准形式,我们求解了相应的位移函数。引入位置修正系数,用镜像法构建了半空间各向异性介质中的散射波场,改善了各向异性半空间介质中的散射波源奇异性问题。然后,结合自由边界条件和傅里叶级数展开法,求解方程中的未知系数。通过将其退化为经典解析解,验证了该方法的正确性。最后,通过频域和时域分析,我们研究了相关参数对地表运动| w1|( w)、动态应力集中系数(DSCF)和位移振幅| w2|的影响。结果表明,岩石各向异性和半圆形峡谷的存在对地下结构的动态响应有显著影响。这不仅为实际的无衬砌隧道或管道工程提供了理论依据,也可为地下结构的抗震设计提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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