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Two-Phase Flow Simulation of Tunnel and Lee-Wake Erosion of Scour below a Submarine Pipeline

机译:隧道隧道的两相流模拟潜艇管道下面的冲刷侵蚀

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This paper presents a numerical investigation of the scour phenomenon around a submarine pipeline. The numerical simulations are performed using SedFoam, a two-phase flow model for sediment transport implemented in the open source Computational Fluid Dynamics (CFD) toolbox OpenFOAM. The paper focuses on the sensitivity of the granular stress model and the turbulence model with respect to the predictive capability of the two-phase flow model. The quality of the simulation results is estimated using a statistical estimator: the Brier Skill Score. The numerical results show no sensitivity to the granular stress model. However, the results strongly depend on the choice of the turbulence model, especially through the different implementations of the cross-diffusion term in the dissipation equation between the k ? ε and the k ? ω 2006 models. The influence of the cross-diffusion term tends to indicate that the sediment transport layer behaves more as a shear layer than as a boundary layer, for which the k ? ε model is more suitable.
机译:本文介绍了潜艇管道周围的冲刷现象的数值调查。使用SEDFOAM进行数值模拟,用于在开源计算流体动力学(CFD)工具箱OpenFoam中实现的沉积物传输的两相流量模型。本文侧重于颗粒应力模型和湍流模型对两相流模型的预测能力的敏感性。使用统计估算器估算模拟结果的质量:BRILL技能分数。数值结果显示对粒度应力模型没有敏感性。然而,结果强烈取决于湍流模型的选择,尤其是通过k的耗散方程中的交叉扩散术语的不同实现。 ε和k? ω2006型号。交叉扩散术语的影响趋于指示沉积物传输层的行为比剪切层比为边界层,其k? ε模型更适合。

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