首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >BREAKING WAVE IMPACTS ON OFFSHORE WIND TURBINE FOUNDATIONS:FOCUSED WAVE GROUPS AND CFD
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BREAKING WAVE IMPACTS ON OFFSHORE WIND TURBINE FOUNDATIONS:FOCUSED WAVE GROUPS AND CFD

机译:破波对海上风轮机基础的影响:聚焦波组和CFD

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Extreme wave loads from breaking waves on a monopile foundation are computed within a 3D CFD model. The wave impacts are obtained by application of focused wave groups.For a fixed position of the monopile, the focus location of the wave group is varied to produce impacts with front shapes that varies from early stages of breaking to broken waves. The CFD results for in-line force are compared to load estimates obtained from the Morison equation. The peak loads determined with this simple method are smaller than those of the CFD solution. The computational results appear to suggest that for the impacts of spilling breakers the peak force gets smaller the more developed the breaking is. This is in qualitative agreement with a finding from shallow water impacts on vertical walls: the strongest wave loads are associated with breakers that hit the structure with slightly overturning front. Extensions of the study are discussed.
机译:在3D CFD模型中计算了来自单桩基础上的破碎波的极限波载荷。波浪冲击是通过应用聚焦波浪群获得的。 对于单桩的固定位置,波浪组的焦点位置会发生变化,以产生正面形状的冲击,从破碎的早期到破碎的波浪都有所不同。将在线力的CFD结果与从Morison方程获得的载荷估算值进行比较。用这种简单方法确定的峰值载荷小于CFD解决方案的峰值载荷。计算结果似乎表明,对于溢出的破碎锤,冲击力越大,峰值力就越小。这与从浅水对垂直墙的冲击中得出的发现在质量上是一致的:最强的波浪载荷与破碎器相关,破碎器以略微翻转的前部撞击结构。讨论了该研究的扩展。

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