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SCOUR ASSESSMENT AND MEASUREMENTS FOR PILE-SUPPORTED WIND TURBINE FOUNDATIONS

机译:桩支撑风轮机基础的冲刷评估和测量

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With the rapid development of offshore wind energy in Europe, a large number of piled structures are being installed. In areas with sandy seabed conditions, erosion of sediment by the actions of wave and current can negatively influence foundation capacity. An accurate prediction model of scour around the piles is therefore required. Well-accepted scour prediction methods exist; both for the equilibrium scour depth and the time scale of scour around single piles. These standard formulas have been combined with metocean data and a hindcasting model to calculate the expected scour depth around piles of wind turbine tripod foundations. Other causes of scour, such as pile-pile interaction, effect of proximity of structural members to the seabed, and seabed mobility were also assessed in order to determine the amount of global scour to be considered. The scour predictions were compared to measurements taken at an offshore wind turbine foundation at Park Alpha Ventus (PAV) in the German North Sea The data showed very good agreement with the measured scour around the piles. Both the equilibrium scour depth and time scale of scour were well predicted using the hindcasting model. The measured scour below the central column of the tripod structure exceeded expectations; this is believed to be due to a pumping effect during storm episodes. Finally, the effect of scour on the vertical effective stress around the tripod piles was assessed with a finite element model. Local scour had an important effect while scour below the centre of the structure had a much more limited effect. Considering the combined effects of multiple pile interaction, scour below the central column, and making an allowance for seabed mobility, an equivalent global scour depth for pile capacity calculations was established.
机译:随着欧洲海上风能的迅猛发展,正在安装大量的堆叠结构。在沙质海底条件的地区,波浪和水流作用对沉积物的侵蚀会对地基承载力产生负面影响。因此,需要精确的桩周围冲刷预测模型。存在公认的冲刷预测方法。平衡冲刷深度和单桩冲刷的时间尺度都是如此。这些标准公式已与海洋数据和后铸模型相结合,以计算风力涡轮机三脚架基础桩周围的预期冲刷深度。为了确定要考虑的整体冲刷量,还评估了其他冲刷原因,例如桩-桩相互作用,结构构件靠近海床的影响以及海床流动性。将冲刷预测值与在德国北海的Park Alpha Ventus(PAV)的海上风力涡轮机基础上进行的测量进行了比较。数据显示,与桩周围测得的冲刷非常吻合。使用后铸模型可以很好地预测平衡冲刷深度和冲刷时间尺度。在三脚架结构的中央柱下方测得的冲刷超出了预期。据信这是由于暴风雨期间的抽水效应。最后,用有限元模型评估了冲刷对三脚架桩周围垂直有效应力的影响。局部冲刷具有重要作用,而结构中心以下的冲刷作用则更为有限。考虑到多桩相互作用,中心柱下方冲刷和海床活动性考虑在内的综合影响,建立了等效的全球冲刷深度用于桩容量计算。

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