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首页> 外文期刊>E3S Web of Conferences >Multibody System Discrete Time Transfer Matrix Method for Nonlinear Shear Dynamic analysis of Immersed Tunnels
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Multibody System Discrete Time Transfer Matrix Method for Nonlinear Shear Dynamic analysis of Immersed Tunnels

机译:浸没隧道非线性剪切动态分析的多体系系统离散时间传递矩阵方法

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摘要

Shear seismic response analysis is critical for seismic design of immersed tunnels. According to the structural characters of immersed tunnels and shear dynamic response of their joints, a multibody dynamic model consisting of multi-rigid body, shear hinge, and viscous damping hinge is proposed for shear response analysis, in which the dynamic stiffness of the shear hinge is divided into two stages based on a threshold. Following the discrete time transfer matrix method for multibody system dynamics (MS-DT-TMM), the mechanical model and mathematical expression of each tunnel element is derived first and then assembled for the whole tunnel system. A solution procedure is proposed to solve the shear dynamic response of immersed tunnels using the proposed multibody system model. It is shown that the MS-DT-TMM has the same computational accuracy as the finite element method (FEM) and the modeling process is more efficient and flexible when compared to FEM. Although the MS-DT-TMM discussed herein is only applied to shear response analysis, it can easily be extended to analyze axial force and bending moment of immersed tunnels leading to a complete, rapid yet accurate enough seismic analysis of immersed tunnels suitable for engineering practices.
机译:剪切地震反应分析对于浸入隧道的地震设计至关重要。根据其关节的浸没隧道的结构特性和它们的关节的剪切动态响应,提出了一种由多刚体,剪切铰链和粘性阻尼铰链组成的多体动力模型,用于剪切响应分析,其中剪切铰链的动态刚度基于阈值分为两个阶段。遵循用于多体系系统动态的离散时间传递矩阵方法(MS-DT-TMM),首先衍生每个隧道元件的机械模型和数学表达,然后组装为整个隧道系统。提出了解决方法来解决使用所提出的多体系系统模型来解决浸没隧道的剪切动态响应。结果表明,与FEM相比,MS-DT-TMM具有与有限元方法(FEM)相同的计算精度,并且建模过程更有效,更灵活。尽管本文所讨论的MS-DT-TMM仅适用于剪切响应分析,但它可以很容易地扩展以分析浸入隧道的轴向力和弯曲力矩,导致完整,快速但适合工程实践的浸没隧道的足够震动分析。适用于工程实践。

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