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An accelerated corrosion-fatigue testing methodology for offshore wind applications

机译:用于海上风应用的加速腐蚀试验方法

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Offshore wind turbines are subjected to cyclic loading conditions during their operational lifespan which is typically between 20 and 25 years. An important issue in fatigue design and integrity assessment of offshore wind turbine foundations is the examination of the long-term fatigue and corrosion-fatigue behaviour of steel structures in the high cycle region. High cycle fatigue tests, particularly at low frequencies in a seawater environment, are time-consuming and costly. Therefore, there is an essential need to perform accelerated tests to predict the long-term behaviour of the structures under realistic operational loading conditions. In this work, the existing fatigue acceleration mechanisms have been reviewed and a novel methodology has been proposed for accelerated testing and analysis of fatigue data in different environments (i.e. air, salt-spray and seawater) at higher temperatures. Two distinct equations have been developed and proposed for the calibration and prediction of S-N fatigue life and crack growth behaviour of steels in different environments. The proposed methodology has been validated through comparison with the existing data in the literature and predictions have been made at operational temperatures using high temperature data. The proposed approach is relatively simple to calibrate for a material of interest and enables accelerating S-N fatigue and crack growth testing of the examined materials by a factor of two and three, respectively. The proposed methodology and the obtained results have been discussed in terms of the need for accelerated testing for fatigue design and integrity assessment of offshore wind monopiles, especially those which are close to the end of initial design life and need a comprehensive engineering analysis for life extension or decommissioning.
机译:离岸风力涡轮机在它们的工作寿命通常是20至25岁之间期间经受循环载荷的条件。在疲劳设计和海上风电机组基础的诚信评估的一个重要问题是在高循环区域钢结构的长期疲劳和腐蚀疲劳行为的检查。高循环疲劳试验中,特别是在海水环境低频,是耗时的和昂贵的。因此,存在执行加速试验来预测实际业务负载条件下的结构的长期行为的基本需要。在这项工作中,现有的疲劳加速度机制已有综述和一种新颖的方法已经提出了在较高温度下的加速试验在不同环境中的疲劳数据的分析(即空气,盐雾和海水)。两个不同的方程已经开发并提出了用于在不同环境钢的S-N疲劳寿命和裂纹增长特性的校准和预测。所提出的方法已通过与文献和预测中的现有数据在使用高温的数据的操作温度已经进行比较验证。所提出的方法是相对简单的校准对于感兴趣的材料和由两个和三个,分别一个因素使被检查材料的加速S-N疲劳和裂纹扩展测试。所提出的方法和所获得的结果在需要的疲劳设计和海上风电单桩的完整性评价加速测试方面,特别是讨论那些接近初始设计寿命的结束,需要延长寿命的综合性工程分析或者退役。

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