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Experimental study of tsunami-induced scour around a monopile foundation

机译:海啸引发的单桩基础周围冲刷的实验研究

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This paper presents an experimental study of the tsunami-induced scour process around a monopile foundation, representative of those commonly used for offshore wind farms. The scour process is studied by subjecting the monopile to a time varying current, which enables a properly down-scaled experiment from the boundary layer and scour perspective. It is shown how the scaled experiments corresponds to real life idealized tsunami cases with periods ranging from 10 to 40 min. It is then shown that the boundary layers of the model tsunami are well described by recently developed empirical relations for tsunami boundary layers. By subjecting the monopile to several successive tsunami waves the scour process is shown to occur in a stepwise cumulative fashion, with the final equilibrium scour depth tending to the depth limited steady current limit. It is shown that the entire scour development can reasonably be predicted by a recently developed simple engineering model. Finally, the experimental results are compared to a fully coupled hydrodynamic and morphologic CFD model and a good correspondence is obtained.
机译:本文对单桩基础周围海啸引发的冲刷过程进行了实验研究,代表了通常用于海上风电场的冲刷过程。通过使单桩经受时变电流来研究冲刷过程,从而可以从边界层和冲刷的角度进行适当缩减规模的实验。它显示了按比例缩放的实验如何与真实生活中理想的海啸病例相对应,周期为10至40分钟。然后表明,通过最近开发的海啸边界层的经验关系可以很好地描述模型海啸的边界层。通过使单桩经受几次连续的海啸波,冲刷过程显示为逐步累积的方式,最终平衡冲刷深度趋向于深度限制的稳定电流极限。结果表明,可以通过最近开发的简单工程模型合理地预测整个冲刷过程。最后,将实验结果与完全耦合的流体动力学和形态CFD模型进行比较,并获得了良好的对应关系。

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