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Tsunami-induced scour around monopile foundations

机译:海啸引发的单桩基础周围的冲刷

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摘要

A fully-coupled (hydrodynamic and morphologic) numerical model is presented, and utilized for the simulation of tsunami-induced scour around a monopile structure, representative of those commonly utilized as offshore wind turbine foundations at moderate depths i.e. for depths less than 30 m. The model is based on solutions to Reynolds-averaged Navier-Stokes equations, coupled with two-equation k a, turbulence closure, with additional bed and suspended load descriptions forming the basis for sea bed morphology. The model is first validated for flow, bed shear stresses, and scour within a steady current, where a generally excellent match with experimentally-based results is found. A methodology for maintaining and assessing hydrodynamic and morphologic similarity between field and (laboratory) model-scale tsunami events is then presented, combining diameter-based Froude number similarity with that based on the dimensionless wave boundary layer thickness-tomonopile diameter ratio. This methodology is utilized directly in the selection of governing tsunami wave parameters (i.e. velocity magnitude and period) used for subsequent simulation within the numerical model, with the tsunami-induced flow modelled as a long sinusoidally-varying current. The flow, sediment transport, and scour processes beneath up to ten tsunami waves are simulated in succession. These illustrate a generally accumulative scour process i.e. a-relatively rapid scour induced by the leading wave, with an additional build-up of the scour depth during additional trailing waves. The resulting scour seems to approach an equilibrium value after sufficient time duration, which corresponds reasonably to that predicted by existing steady-current scour depth expressions, after accounting for the finite boundary layer thickness induced by the unsteady tsunami wave, i.e. it is important to incorporate both current-like, as well as wave-like aspects of the long tsunami event. Based on the simulated results, a simple methodology for predicting the tsunami-induced scour depth in engineering practice is finally developed. This methodology is demonstrated to match the predicted scour development for all of the simulated flows considered, ranging from the series of transient tsunami waves to the steady-current limit.
机译:提出了一个完全耦合的(水动力和形态学)数值模型,并将其用于模拟单桩结构周围海啸引起的冲刷,代表了通常用作中等深度(即深度小于30 m)的海上风力发电机基础的冲刷。该模型基于雷诺平均Navier-Stokes方程的解,再加上两个方程ka,湍流闭塞,附加床和悬浮载荷描述构成了海床形态的基础。首先对模型进行流,床剪应力和稳定电流冲刷的验证,在该模型中发现通常与基于实验的结果非常匹配。然后提出了一种方法,该方法结合了基于直径的Froude数相似度与基于无量纲波边界层厚度与单孔直径之比的方法,来维护和评估现场和(实验室)模型海啸事件之间的水动力和形态相似性。该方法直接用于控制海啸波参数(即速度大小和周期)的选择,这些参数用于数值模型中的后续模拟,海啸感应的流量被建模为长正弦变化电流。连续模拟了十个海啸以下的水流,泥沙输送和冲刷过程。这些说明了一般的累积冲刷过程,即由前导波引起的相对较快的冲刷过程,并且在另外的尾随波中还增加了冲刷深度。在考虑了由非稳定海啸波引起的有限边界层厚度之后,经过足够的持续时间后,所产生的冲刷似乎接近平衡值,该值合理地对应于现有的稳定电流冲刷深度表达式所预测的值。长期海啸事件既有潮流,又有波浪。基于模拟结果,最终开发了一种简单的方法来预测海啸在工程实践中引起的冲刷深度。事实证明,该方法可与考虑的所有模拟流量(从一系列海啸波到稳定电流极限)的预期冲刷发展相匹配。

著录项

  • 来源
    《Coastal engineering》 |2017年第11期|36-49|共14页
  • 作者单位

    Tech Univ Denmark, Dept Mech Engn, Sect Fluid Mech Coastal & Maritime Engn, DK-2800 Lyngby, Denmark;

    Tech Univ Denmark, Dept Mech Engn, Sect Fluid Mech Coastal & Maritime Engn, DK-2800 Lyngby, Denmark;

    Middle East Tech Univ, Dept Civil Engn, Ocean Engn Res Ctr, Dumlupinor Blvd, TR-06800 Ankara, Turkey;

    Tech Univ Denmark, Dept Mech Engn, Sect Fluid Mech Coastal & Maritime Engn, DK-2800 Lyngby, Denmark|Istanbul Tech Univ, BM SUMER Consultancy & Res, ARI Telmokent 3,B110, TR-34467 Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tsunamis; Scour; Monopiles; Morphology; Computational Fluid Dynamics; Turbulence modelling;

    机译:海啸;冲刷;单桩;形态;计算流体力学;湍流建模;

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