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Brief communication: Structural health monitoring for lifetime extension of offshore wind monopiles: can strain measurements at one level tell us everything?

机译:简要沟通:海上风电单桩寿命延长的结构健康监测:在一个水平上的应变测量能告诉我们一切吗?

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摘要

Operators need accurate knowledge on structural reserves to decide about lifetime extension of offshore wind turbines. Load monitoring enables us to directly compare design loads with real loading histories of the support structure in order to calculate its remaining useful lifetime. Monitoring of every hot spot is technically and financially not feasible. This paper presents a novel idea for load monitoring of monopiles. It requires strain measurements at only one level convenient for sensor installation, such as tower bottom. Measurements are converted into damage equivalent loads for 10 min time intervals. Damage equivalent loads are extrapolated to other locations of the structure with a simulation model and statistical algorithm. For this, structural loads at all locations of the monopile are calculated with aero-hydro-elastic software and updated finite element models. Damage equivalent loads at unmeasured locations are predicted from the simulation results with a k-nearest neighbor regression algorithm. The extrapolation was tested with numerical simulations of an 8 MW offshore wind turbine. Results show that damage can be predicted with an error of 1–3 % if this is done conditional on mean wind speed, which is very promising. The load monitoring concept is simple, cheap and easy to implement. This makes it ideal for making decisions on lifetime extension of monopiles.
机译:运营商需要有关结构储量的准确知识,才能确定海上风力涡轮机的使用寿命。负载监控使我们能够直接将设计负载与支撑结构的实际负载历史进行比较,以计算其剩余使用寿命。在技​​术上和财务上,对每个热点进行监视都是不可行的。本文提出了一种用于单桩负荷监测的新思路。它只需要在便于安装传感器的一层(例如塔底)进行应变测量。在10分钟的时间间隔内,将测量结果转换为等效损伤载荷。通过模拟模型和统计算法,将等效破坏荷载推算到结构的其他位置。为此,使用气动水弹软件和更新的有限元模型来计算单桩所有位置的结构载荷。使用k最近邻回归算法从仿真结果中预测未测量位置处的损伤当量载荷。外推采用8兆瓦海上风力发电机的数值模拟进行了测试。结果表明,如果以平均风速为条件,则可以预测出1-3%的误差,这是非常有希望的。负载监视概念简单,便宜且易于实现。这使其成为决定单桩寿命的理想选择。

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