首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >BREAKING WAVE-INDUCED DYNAMIC RESPONSE OF RUBBLE MOUND AND SEABED UNDER A CAISSON BREAKWATER
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BREAKING WAVE-INDUCED DYNAMIC RESPONSE OF RUBBLE MOUND AND SEABED UNDER A CAISSON BREAKWATER

机译:沉箱破壁下破壁和水下破壁引起的动力响应

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A finite element (FE) model is developed to study the breaking wave-induced dynamic response of the porous seabed and the rubble mound foundation under a composite caisson-type breakwater. The breaking wave impact pressure distributions on the front face of the breakwater are calculated using a recently proposed method. In this study the focus is on the dynamic response of the foundation materials underneath the breakwater. The impact response of the seabed and the rubble mound is presented in terms of pore pressure and shear stress induced around the breakwater. A complete formulation of the fully dynamic response requires inclusion of the inertial terms associated with both the motion of solid skeleton and that of pore fluid. However, partly dynamic and quasi-static idealizations are also possible. The objective of this study is to investigate the effects of the inertial terms on the breaking wave induced impact response of the seabed as well as the rubble. The effect of seabed saturation on the response from different formulations is also examined.
机译:建立了有限元(FE)模型,研究复合沉箱式防波堤下多孔海底和碎石丘陵地基的破碎波诱发动力响应。使用最近提出的方法来计算防波堤正面的破碎波冲击压力分布。在这项研究中,重点是防波堤下面基础材料的动力响应。用孔隙压力和在防波堤周围引起的切应力表示海床和瓦砾的冲击响应。完整动力响应的完整表述需要包括与固体骨架运动和孔隙流体运动相关的惯性项。然而,部分动态的和准静态的理想化也是可能的。这项研究的目的是研究惯性项对碎波引起的海底以及碎石的冲击响应的影响。还检查了海床饱和度对不同配方响应的影响。

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