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Mechanism of Localized Corrosion of Steel Pipe Pile Foundation for Offshore Wind Turbines and Corrosive Action

机译:海上风力发电机钢管桩基础局部腐蚀机理及腐蚀作用

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The wind turbine foundation serves as a permanent construction in the harsh marine corrosive environment, its anti-corrosion design is essential to the safe use of the wind turbine structure. At present, there is a significant controversy over the local corrosion mechanism (such as pitting corrosion, and crevice corrosion) and its diffusion mechanism in the academic circle. In the paper, the Faraday electrochemistry formula was used to compute the local corrosion degree of the steel pipe pile for the wind turbine and obtain the general corrosion equivalent. The local corrosion effect of the offshore steel pipe pile for the wind turbine was converted into homogeneous corrosion thickness loss of certain length, and then the ultimate strength of the offshore steel pipe pile foundation for the wind turbine was analyzed under the conditions of local corrosion. The result indicates that the maximum ultimate strength reductionof the steel pipe pile for the wind turbine induced by the local corrosion in the splash zone is 80.8% of the non-corrosive ultimate strength. The maximum ultimate strength reduction of the steel pipe pile for the wind turbine induced by the local corrosion in the continuous immersion zone is 63% of the non-corrosive ultimate strength. Once the local corrosion rate in the splash zone exceeds 10%, the ultimate strength of the steel pipe pile for the wind turbine will exhibit a negative exponential decrease. The local corrosion in the continuous immersion zone has a huge effect on its ultimate strength. There are no significant signs of the structural strength loss. The areas prone to local corrosion should be prioritized in anti-corrosion design of the steel pipe pile for the wind turbine.
机译:风力涡轮机基础在恶劣的海洋腐蚀环境中用作永久性结构,其防腐蚀设计对于安全使用风力涡轮机结构至关重要。目前,关于局部腐蚀机理(如点蚀和缝隙腐蚀)及其在学术界的扩散机理存在很大争议。本文利用法拉第电化学公式计算了风力涡轮机钢管桩的局部腐蚀程度,得到了一般腐蚀当量。将海上风机管桩对风机的局部腐蚀作用转换为一定长度的均匀腐蚀厚度损失,然后在局部腐蚀条件下分析风机管桩基的极限强度。结果表明,飞溅区局部腐蚀引起的风力机钢管桩的最大极限强度降低是非腐蚀极限强度的80.8%。由连续浸没区中的局部腐蚀引起的用于风力涡轮机的钢管桩的最大极限强度降低是非腐蚀极限强度的63%。一旦飞溅区的局部腐蚀率超过10%,用于风力涡轮机的钢管桩的极限强度将呈现负指数下降。连续浸没区的局部腐蚀对其极限强度有很大影响。没有明显的结构强度损失迹象。风力涡轮机钢管桩的防腐蚀设计应优先考虑易于局部腐蚀的区域。

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