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A numerical procedure for simulating the multi-support seismic response of submerged floating tunnels anchored by cables

机译:数值模拟悬索浮潜隧道多支点地震反应的数值过程

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The modeling and seismic analysis of submerged floating tunnels moored by cables is addressed with particular attention to spatial variability of the excitation. Dissipation modeling issues and cables dis cretization are also discussed. A uniformly modulated random process, whose spatial variability is governed by a single coherency function, is deemed adequate to model the multi-support seismic input for a given structure of large dimension undergoing limited plastic deformation, as the one considered here. A novel method to obtain response spectrum compatible accelerograms is proposed, based on the explicit expression of the median pseudo-acceleration response spectrum induced by the adopted power density function (PSD). This expression is used to identify the parameters of the PSD function that minimize the difference with the elastic response spectrum prescribed by EN 1998; the minimization process is discussed and parameters for the PSD spectra are obtained. Samples of the free-field motion are then generated using a proved and theoretically sound approach and reach a satisfactory agreement with the prescribed response spectra. To model the cables, a 3 node isoparametric cable element is enriched by including hydrodynamic loading, within a numerical procedure for the dynamic time domain step-by-step analysis of non-linear discretized systems. An example of application is shown that makes reference to the bed profile of Qiandao Lake (People's Republic of China), where a plan exists to build the first SFT prototype.
机译:特别要注意激发的空间变异性,以电缆系泊的潜水浮道的建模和地震分析为重点。还讨论了耗散建模问题和电缆离散化。一个空间均匀性受单个相干函数支配的统一调制随机过程,被认为足以对给定的经历有限塑性变形的大尺寸结构的多支撑地震输入进行建模,如此处考虑的那样。基于采用的功率密度函数(PSD)引起的中值伪加速度响应谱的明确表示,提出了一种获取响应谱兼容加速度谱的新方法。该表达式用于识别PSD函数的参数,这些参数可最大程度地减少与EN 1998规定的弹性响应谱之间的差异;讨论了最小化过程,并获得了PSD光谱的参数。然后使用一种经过验证的理论上合理的方法生成自由场运动的样本,并与规定的响应谱达成令人满意的一致性。为了对电缆建模,在数值过程中通过对非线性离散系统进行动态时域逐步分析,在流体力学载荷中丰富了3节点等参电缆元素。给出了一个应用示例,该示例参考了千岛湖(中国)的河床剖面,那里计划建造第一个SFT原型。

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