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首页> 外文期刊>Journal of Hydraulic Engineering >Two-Phase Simulation of Wave-Induced Tunnel Scour beneath Marine Pipelines
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Two-Phase Simulation of Wave-Induced Tunnel Scour beneath Marine Pipelines

机译:海洋管道下方波状隧道冲刷的两相模拟

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摘要

An Eulerian two-phase flow model was presented and employed to investigate wave-induced tunnel scour beneath marine pipelines. The model is based on the Euler-Euler coupled governing equations for the fluid and sediment phases, i.e., time-averaged continuity and momentum equations were solved for both phases with a modified k -ε turbulence closure for the fluid phase. Fluid-particle, particle-particle, and fluid-structure interactions were implemented in the simulation. The model accounts for the interphase momentum exchange by considering the drag, lift, and added mass forces. The flow model was validated against an oscillatory flow around an isolated cylinder and a cylinder close to a rigid wall. The two-phase model was also validated against an oscillatory sheet-flow motion above a plane bed. Then, the two-phase model was used to simulate the wave-induced tunnel scour beneath the pipeline laid on a plane erodible bed. Comparison between the numerical results and experimental measurements indicates that the model simulates the bed profile successfully during the tunnel scour stage. Investigations revealed that the tremendous sediment transport takes place during the tunnel scour stage under high turbulence intensity. A phase-lag was observed between the flow velocity in the scour hole and the free stream velocity.
机译:提出了一种欧拉两相流模型,并将其用于研究波浪对海洋管道下方的隧道冲刷。该模型基于流体和沉积物相的Euler-Euler耦合控制方程,即求解了两个相的时间平均连续性和动量方程,并为流体相添加了改进的k-ε湍流闭塞。在模拟中实现了流体-粒子,粒子-粒子和流体-结构的相互作用。该模型通过考虑阻力,升力和附加质量力来说明相间动量交换。针对围绕隔离圆柱体和靠近刚性壁的圆柱体的振荡流验证了流动模型。还针对在平板上方的振荡薄板流运动验证了两相模型。然后,利用两相模型模拟了在平面易蚀层上铺设的管道下方的波浪诱发的隧道冲刷。数值结果与实验测量值之间的比较表明,该模型在隧道冲刷阶段成功地模拟了岩床剖面。调查表明,在高湍流强度下,冲刷阶段发生了大量的泥沙输送。在冲刷孔中的流速和自由流速度之间观察到相位滞后。

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