Analytical seismic model for a tunnel with segmental liner buried in the half-space soil

IF 4.2 2区 工程技术 Q1 ENGINEERING, GEOLOGICAL Soil Dynamics and Earthquake Engineering Pub Date : 2024-08-23 DOI:10.1016/j.soildyn.2024.108920
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Abstract

In this paper, by using the wave function expansion (WFE) and the expansion of the cylindrical wave into plane wave (ECPW) methods, an analytical method for the dynamic response of a circular tunnel with segmental liner buried in the half-space soil to harmonic elastic waves is developed. The liner of the tunnel is supposed to consist of several segments and joints. Both the segments and joints are treated as open cylindrical shells, and the segment and joint shells together thus form an equivalent continuous shell (ECS) liner, and the thin shell theory is utilized to describe its vibration. The scattered wave field due to the presence of the tunnel and boundary of the half-space soil is divided into two parts, namely, the direct scattered wave field and secondary scattered wave field. The expressions for the direct scattered cylindrical waves in the soil is determined via the WFE method, while the secondary scattered waves form the boundary of the half-space soil are obtained by the ECPW method together with the application of the boundary condition along the soil surface. Applying the cylindrical shell theory on the ECS liner and using the Fourier series expansions for the variables and parameters of the ECS liner along the azimuthal direction together with introducing the Fourier component constitutive relation for the ECS liner, a system of equations for the Fourier component ECS displacements are derived with the differential equations for the ECS liner displacements. By using the system of equations, the expressions for the free and scattered wave fields and the continuity conditions at the interface between the liner and soil, the system of equations for the ECS liner coupled with the soil are derived. By using the developed analytical method for the tunnel, some results of the ECS tunnel under different incident waves are given.

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半空间土中埋设分段衬砌隧道的地震分析模型
本文利用波函数展开(WFE)和圆柱波展开为平面波(ECPW)方法,建立了埋在半空间土壤中的带分段衬砌的圆形隧道对谐波弹性波的动态响应的分析方法。隧道衬砌假定由若干段和接头组成。分段和连接处都被视为开口圆柱壳,因此分段和连接处的壳体共同构成了等效连续壳(ECS)衬砌,并利用薄壳理论来描述其振动。由于隧道和半空间土壤边界的存在,散射波场分为两部分,即直接散射波场和二次散射波场。土壤中的直接散射圆柱波的表达式通过 WFE 方法确定,而半空间土壤边界的二次散射波则通过 ECPW 方法和沿土壤表面的边界条件得到。在 ECS 衬垫上应用圆柱壳理论,对 ECS 衬垫的变量和参数沿方位角方向进行傅里叶级数展开,并引入 ECS 衬垫的傅里叶分量构成关系,得出 ECS 位移的傅里叶分量方程组和 ECS 衬垫位移的微分方程。利用该方程组、自由波场和散射波场的表达式以及衬垫和土壤界面的连续性条件,可导出 ECS 衬垫与土壤耦合的方程组。利用所开发的隧道分析方法,给出了 ECS 隧道在不同入射波下的一些结果。
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来源期刊
Soil Dynamics and Earthquake Engineering
Soil Dynamics and Earthquake Engineering 工程技术-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
446
审稿时长
8 months
期刊介绍: The journal aims to encourage and enhance the role of mechanics and other disciplines as they relate to earthquake engineering by providing opportunities for the publication of the work of applied mathematicians, engineers and other applied scientists involved in solving problems closely related to the field of earthquake engineering and geotechnical earthquake engineering. Emphasis is placed on new concepts and techniques, but case histories will also be published if they enhance the presentation and understanding of new technical concepts.
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