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Seismic dynamics of offshore breakwater on liquefiable seabed foundation

机译:可液化海底地基上海上防波堤的地震动力学

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Offshore structures, such as composite breakwaters, are generally vulnerable to strong seismic wave propagating through loose or medium-dense seabed foundation. However, the seismically induced failure process of offshore structures is not well understood. In this study, seismic dynamics of a composite breakwater on liquefiable seabed foundation is investigated using a fully coupled numerical model FSSI-CAS 2D. The computation results show that the numerical model is capable of capturing a variety of nonlinear interaction phenomena between the composite breakwater and its seabed foundation. The numerical investigation demonstrates a three-stage failure process of the breakwater under seismic loading. In this process, the far-field seabed can become fully liquefied first, inducing excessive settlement of the structure, followed by significant lateral movement and tilting of the structure when the near-field soil progressively liquefies. The study demonstrates great promise of using advanced numerical analysis in geotechnical earthquake design of offshore structures. (c) 2015 Elsevier Ltd. All rights reserved.
机译:诸如复合防波堤之类的近海结构通常容易受到通过松散或中等密度海底基础传播的强烈地震波的攻击。但是,对海上结构的地震诱发破坏过程还没有很好的了解。在这项研究中,使用全耦合数值模型FSSI-CAS 2D研究了液化海底地基上复合防波堤的地震动力学。计算结果表明,该数值模型能够捕获复合防波堤与其海床基础之间的多种非线性相互作用现象。数值研究表明了地震荷载作用下防波堤的三阶段破坏过程。在此过程中,远场海床首先会被完全液化,引起结构的过度沉降,然后当近场土壤逐渐液化时,会发生明显的横向运动和结构倾斜。该研究表明在海上结构的岩土地震设计中使用先进的数值分析是很有前途的。 (c)2015 Elsevier Ltd.保留所有权利。

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