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Mechanism of local scour around submarine pipelines based on numerical simulation of turbulence model

机译:基于湍流模型数值模拟的海底管道局部冲刷机理

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摘要

The mechanism of local scour around submarine pipelines is studied numerically based on a renormalized group (RNG) turbulence model. To validate the numerical model, the equilibrium profiles of local scour for two cases are simulated and compared with the experimental data. It shows that the RNG turbulence model can give an appropriate prediction for the configuration of equilibrium scour hole, and it is applicable to this situation. The local scour mechanism around submarine pipelines including the flow structure, shear stress distribution and pressure field is then analyzed and compared with experiments. For further comparison and validation, especially for the flow structure, a numerical calculation employing the large eddy simulation (LES) is also conducted. The numerical results of RNG demonstrate that the critical factor governing the equilibrium profile is the seabed shear stress distribution in the case of bed load sediment transport, and the two-equation RNG turbulence model coupled with the law of wall is capable of giving a satisfying estimation for the bed shear stress. Moreover, the piping phenomena due to the great difference of pressure between the upstream and downstream parts of pipelines and the vortex structure around submarine pipelines are also simulated successfully, which are believed to be the important factor that lead to the onset of local scour.
机译:基于重归一化(RNG)湍流模型,对海底管道周围的局部冲刷机理进行了数值研究。为了验证该数值模型,模拟了两种情况下局部冲刷的平衡曲线,并将其与实验数据进行了比较。结果表明,RNG湍流模型可以为平衡冲孔的形态提供适当的预测,适用于这种情况。然后分析了海底管道周围的局部冲刷机理,包括流动结构,剪切应力分布和压力场,并与实验进行了比较。为了进行进一步的比较和验证,特别是对于流动结构,还进行了使用大涡模拟(LES)的数值计算。 RNG的数值结果表明,在床底泥沙输送的情况下,控制平衡剖面的关键因素是海床剪切应力的分布,并且两方程RNG湍流模型与墙的定律相结合可以给出令人满意的估计。用于床的剪应力。此外,还成功地模拟了由于管道的上游和下游部分之间的压力差和海底管道周围的涡流结构而引起的管道现象,这被认为是导致局部冲刷发生的重要因素。

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