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MODELING BREAKING WAVES FOR FIXED-BOTTOM SUPPORT STRUCTURES FOR OFFSHORE WIND TURBINES

机译:海上风轮机固定底部支撑结构的破碎波形建模

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Fixed-bottom offshore wind turbines (OWTs) are typically located in shallow to intermediate water depth, where waves are likely to break. Support structure designs for such turbines must account for loads due to breaking waves, but predictions from breaking wave models often disagree with each other and with observed behavior. This variability indicates the needfor a better understanding of each model's strengths and limitations, especially for different ocean conditions. This work evaluates and improves the accuracy of common breaking wave criteria through comparison to Computational Fluid Dynamics (CFD) simulations of breaking waves. The simulated ocean conditions are representative of potential U.S. East Coast offshore wind energy development sites, but the discussion of model accuracy and limitations can be applied to any location with similar ocean conditions. The waves are simulated using CONVERGE, a commercial CFD software that uses a Volume of Fluid (VOF) approach and includes adaptive mesh refinement at the evolving air-water interface. First, the CFD model is validated against experimental data for shoaling and breaking wave surface elevations. Second, 2D simulations of breaking waves are compared to widely-used breaking wave limits (McCowan, Miche, and Goda) for different combinations of wave height, wavelength, water depth, and seafloor slope. Based on these comparisons, the accuracy and limitations of each breaking limit model are discussed. General usage guidelines are then recommended.
机译:底部固定的海上风力涡轮机(OWT)通常位于浅水至中等水深处,波浪很可能会破裂。用于这种涡轮机的支撑结构设计必须考虑由于波浪造成的载荷,但是来自波浪模型的预测通常彼此不同,并且与观察到的行为不一致。这种可变性表明需要更好地了解每种模型的优势和局限性,尤其是在不同的海洋条件下。这项工作通过与破碎波的计算流体力学(CFD)模拟进行比较,评估并提高了常见破碎波准则的准确性。模拟的海洋状况代表了美国潜在的美国东海岸海上风能开发地点,但是对模型准确性和局限性的讨论可以应用于任何具有类似海洋状况的地点。使用商用CFD软件CONVERGE(使用流体体积(VOF)方法,并在不断发展的气-水界面处进行自适应网格细化)对波浪进行仿真。首先,针对实验数据对CFD模型进行了验证,以用于浅化和破坏波面高程。其次,针对波浪高度,波长,水深和海底坡度的不同组合,将破碎波的2D模拟与广泛使用的破碎波极限(McCowan,Miche和Goda)进行比较。基于这些比较,讨论了每个突破极限模型的准确性和局限性。然后建议使用一般准则。

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