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Three-Dimensional Modeling of Wave-Induced Seabed Response around a Semi-Buried Pipeline: A Small-Scale Case

机译:半埋管道周围波引起海底反应的三维建模:小尺度案例

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In this paper, a three-dimensional integrated numerical model for a small-scale case of wave-induced oscillatory soil response around a semi-buried pipeline (PORO-WSSI-PIPE 3D) is proposed. In this model, we combine the Reynolds-averaged Navier-Stokes (RANS) equations for the 3D wave motions and the Biot's consolidation equations for a porous elastic seabed foundation through pressure continuity at common boundaries, with pipeline being an elastic and impermeable medium. The computational results are validated through comparison with previous analytical solutions and laboratory wave flume tests, obtaining good agreement. Following validation, the numerical model is applied to simulate wave-seabed-pipeline interaction with different obliquities between pipeline and incident wave, varying from 30 deg to 90 deg. Snapshots of wave-seabed-pipeline interaction, as well as dynamic pore pressure distributions at typical locations in the vicinity of a semi-buried pipeline, are obtained and analyzed. The three-dimensional consolidation process of seabed under gravitational forces including the body forces of a pipeline is also discussed.
机译:在本文中,提出了一种三维集成数值模型,用于围绕半掩埋管道(Poro-WSSi-Pipe 3D)的波引起的波引起的波引起的振荡土壤反应的小尺度情况。在该模型中,我们将Reynolds平均的Navier-Stokes(RANS)方程组合在于3D波动动作,并通过普通边界的压力连续性来实现3D波动运动和BIOS的整合方程,管道是弹性和不可渗透的介质。通过与先前的分析解决方案和实验波水管测试进行比较,验证了计算结果,获得了良好的一致性。在验证之后,应用数值模型来模拟管道和入射波之间的不同灰度的波海床管道相互作用,从30度到90°不同。获得了波浪海床 - 管道相互作用的快照,以及在半埋管线附近的典型位置处的动态孔隙压力分布,并分析。还讨论了包括管道的体力的引力力下海床的三维固结过程。

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