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Modeling of Qiandao Lake submerged floating tunnel subject to multi-support seismic input

机译:千岛湖淹没浮隧道造型经受多支撑地震输入的影响

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The modeling and seismic analysis of Qiandao lake submerged floating tunnel (SFT) is addressed with particular attention to the mooring system, to dissipation issues and to the spatial variability of the excitation, within a numerical procedure developed by the research group to perform the step-by-step dynamic analysis of discretized non-linear structural systems. The procedure, which can handle arbitrary external loading allowing for multiple-support seismic excitation, is enhanced by enriching the mooring cables model adding non-linear hydrodynamic loads. Different dissipation models account for hydrodynamic damping, structural damping and radiation damping which are included, respectively, as non-linear forces, as linear viscous damping equivalent to linear hysteretic by means of an iterative procedure, and as linear viscous damping. A possible solution is here studied to define an adequate cable discretization in order to correctly model nonlinear geometric effects and to avoid fictitious compressions. A uniformly modulated random process, whose spatial variability is governed by a single coherency function, is deemed adequate to model multi-support seismic input for the given structure. A novel method to obtain response spectrum compatible accelerograms is here proposed.
机译:千岛湖淹没浮隧道(SFT)的建模和地震分析特别关注系泊系统,以耗散问题和激励的空间变异,在研究组开发的数值过程中,以执行阶梯 - 离散非线性结构系统的逐步动态分析。通过富集系泊电缆模型添加非线性水动力载荷,可以增强可以处理允许多支撑震动激发的任意外部装配的程序。不同的耗散模型用于流体动力阻尼,结构阻尼和辐射阻尼,分别作为非线性力作为非线性力,作为借助于迭代过程的线性滞后等同于线性滞后,并且作为线性粘性阻尼。这里研究了可能的解决方案以定义足够的电缆离散化,以便正确模拟非线性几何效果并避免虚构的压缩。一种均匀调制的随机过程,其空间可变性由单个一致性函数控制,被认为是适用于给定结构的多支撑地震输入。这里提出了一种获得响应谱兼容加速器局的新方法。

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