首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >NUMERICAL MODELLING OF WAVE-INDUCED PORE PRESSURE AROUND A BURIED PIPELINE: WSPI-3D MODEL
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NUMERICAL MODELLING OF WAVE-INDUCED PORE PRESSURE AROUND A BURIED PIPELINE: WSPI-3D MODEL

机译:埋地管道周围波引起的孔隙压力的数值模拟:WSPI-3D模型

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In this paper, a three-dimensional numerical model is developed to analyze the ocean wave-induced seabed response. The pipeline is assumed to be rigid and anchored within a trench. Quasi-static soil consolidation equations are solved with the aid of the proposed Finite Element (FE) model within COMSOL Multiphysics. The influence of wave obliquity on seabed responses, the pore pressure and soil stresses, are studied. A comprehensive tests of FE meshes is performed to determine appropriate meshes for numerical calculations. The present model is verified with the previous analytical solutions without a pipeline and two-dimensional experimental data with a pipeline. Numerical results suggest that the effect of wave obliquity on soil responses can be explained through the following two mechanisms: (i) geometry-based three-dimensional influences, and (ii) the formation of inversion nodes. However, the influences of wave obliquity on the wave-induced pore pressure are insignificant.
机译:本文建立了三维数值模型来分析海浪引起的海床响应。假定管道是刚性的,并锚固在沟槽内。借助COMSOL Multiphysics中建议的有限元(FE)模型,解决了准静态土壤固结方程。研究了波浪倾角对海床响应,孔隙压力和土壤应力的影响。进行了有限元网格的综合测试,以确定用于数值计算的适当网格。本模型通过不带管道的先前分析解决方案和带管道的二维实验数据进行了验证。数值结果表明,波浪倾斜对土壤响应的影响可以通过以下两种机制来解释:(i)基于几何的三维影响,以及(ii)反演节点的形成。然而,波倾角对波引起的孔隙压力的影响是微不足道的。

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