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Dynamic response of an offshore pile to pseudo-Stoneley waves along the interface between a poroelastic seabed and seawater

机译:沿多孔弹性海床与海水之间界面的近海桩对伪斯通利波的动力响应

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摘要

A coupled model is developed to investigate the dynamic interaction between an offshore pile, a porous seabed and seawater when subjected to the pseudo-Stoneley wave along the seabed and the seawater interface. The pile and the seabed are treated as the porous medium governed by Biot's theory, while the seawater is considered as an acoustic medium and is described by the conventional Helmholtz equation. The free field solution of the incident pseudo-Stoneley wave is obtained using Biot's theory and the potential method. Based on the boundary element method (BEM) for the porous medium and the acoustic medium, three BEM formulations are constructed for the pile, the seabed and the seawater, respectively, which are combined together using the continuity conditions between the pile, the seabed and the seawater to formulate the coupled model for the system. As shown in numerical examples, when the system is subjected to the pseudo-Stoneley wave, the maximum pore pressure of the seabed usually occurs at the region near the interfaces between the seabed and the seawater.
机译:建立了一个耦合模型,以研究当沿海床和海水界面遭受拟斯通利波时,海上桩,多孔海床和海水之间的动态相互作用。桩和海床被视为由毕奥特理论控制的多孔介质,而海水被视为一种声学介质,并通过常规的亥姆霍兹方程进行描述。利用比奥特理论和势能法获得了入射伪斯通利波的自由场解。基于多孔介质和声介质的边界元方法(BEM),分别针对桩,海床和海水构造了三种BEM公式,利用桩,海床和海水之间的连续性条件将它们组合在一起。海水以建立系统的耦合模型。如数值示例所示,当系统受到伪斯通利波时,海床的最大孔隙压力通常发生在海床与海水之间的界面附近的区域。

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