Geospatial analysis of scour development post-protection in offshore wind farm

Qiang Li, Qunchao Ma, Xinglei Cheng, Kangyu Wang, Mingyuan Wang
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Abstract

Scour is one of the most serious challenges affecting the normal operation of offshore wind power. Whether scour protection measures are effective directly affects the safety and economical efficiency of an offshore wind farm. Data mining techniques and analytical tools based on monitoring data analysis plays a critical role in making appropriate strategic decisions. Post-protection scour inspection was continuously carried out on a typical offshore wind farm composed of 72 turbines installed with monopile foundations for three times over the course of two years. The geospatial properties of scour, including maximum scour depth, maximum scour extension, and scouring and siltation volume, were analyzed in detail. The possible autocorrelation of scour data measured for each turbine was identified using data-driven decision-making process. The results indicate that the characteristics of the investigated scour and their spatial dependence on the turbines of the inspected offshore wind farm generally show an upward trend over time. A High-High area in the local geospatial dependency map of maximum scour depth was identified, and an equation was drawn for predicting development of maximum scour depth. These findings show indications to reduce the operation and maintenance costs of offshore wind farms and improve the efficiency for upgrading scour protection on specific offshore wind foundations.
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海上风电场保护后冲刷发展的地理空间分析
冲刷是影响海上风电正常运行的最严峻挑战之一。冲刷保护措施是否有效直接影响着海上风电场的安全和经济效益。基于监测数据分析的数据挖掘技术和分析工具在做出适当的战略决策方面发挥着至关重要的作用。在两年的时间里,对一个典型的海上风电场进行了三次持续的冲刷保护后检查,该风电场由 72 台安装了单桩基础的涡轮机组成。详细分析了冲刷的地理空间特性,包括最大冲刷深度、最大冲刷扩展以及冲刷和淤积量。利用数据驱动决策过程,确定了每个水轮机测得的冲刷数据可能存在的自相关性。结果表明,所调查的冲刷特征及其与所检查的海上风电场涡轮机的空间依赖性总体上随时间呈上升趋势。在最大冲刷深度的局部地理空间依赖图中确定了一个 "高-高 "区域,并绘制了预测最大冲刷深度发展的方程。这些发现表明,降低海上风电场的运行和维护成本,提高特定海上风电场冲刷防护升级的效率是有意义的。
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