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Numerical models for the dynamic response of submerged floating tunnels under seismic loading

机译:地震作用下潜浮隧道动力响应数值模型

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The modeling of tethering elements of seabed anchored floating structures is addressed, with particular reference to the so-called Archimedes Bridge (submerged floating tunnel, SFT) solution for deep water crossing; attention is devoted to the design solution encompassing slender bars as anchor elements. Two numerical tools are proposed: firstly, a geometrically nonlinear finite element (NWB model), developed in previous work, has been refined in order to capture the effect of higher flexural modes of anchor bars. Secondly, a 3D beam element, based on the classical corotational formulation (CR model), has been developed and coded. Both elements are implemented in a numerical procedure for the dynamic time domain step-by-step analysis of nonlinear discretized systems; seismic loading is introduced by generating artificial time histories of spatially variable seismic motion. An example of application of the NWB element is shown regarding the behavior of the dynamic model of a complete SFT. The model was subjected to extreme multiple-support seismic loading. The seismic behavior is here illustrated and commented, especially in light of the effect of higher local vibration modes of the anchor bars. Finally, a comparison between the performances of the two modeling approaches is presented. Both harmonic and seismic excitations are considered in the test; the results justify the use of the simpler NWB approach, especially in the SFT design phase.
机译:讨论了海床锚定浮动结构的系留元件的建模问题,特别是针对深水穿越的所谓阿基米德桥(水下浮动隧道,SFT)解决方案。专注于包含细长杆作为锚固元素的设计解决方案。提出了两种数值工具:首先,对先前工作中开发的几何非线性有限元(NWB模型)进行了改进,以捕获锚杆较高挠曲模式的影响。其次,基于经典的配比公式(CR模型)的3D光束元素已经被开发和编码。这两个要素均通过数值程序实现,以对非线性离散系统进行动态时域分步分析。通过生成空间可变地震运动的人工时间历史来引入地震荷载。关于完整SFT的动态模型的行为,显示了NWB元素的应用示例。该模型承受了极端的多支撑地震荷载。此处说明和注释了地震行为,尤其是考虑到锚杆较高的局部振动模式的影响。最后,比较了两种建模方法的性能。测试中同时考虑了谐波和地震激励。结果证明使用更简单的NWB方法是合理的,尤其是在SFT设计阶段。

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