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Response Analysis and Comparison of a Spar-Type Floating Offshore Wind Turbine and an Onshore Wind Turbine under Blade Pitch Controller Faults

机译:叶片桨距控制器故障下翼型浮式海上风力发电机组与陆上风力发电机组的响应分析与比较

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摘要

This paper analyses the effects of three pitch controller faults on the responses of an onshorewind turbine and a spar-type offshore floating wind turbine. These faults include:a stuck blade pitch actuator,a fixed value fault and a bias fault of the blade pitch sensor.The faults are modeled in the controller dynamic link library and a short-term extreme response analysis is performed using the HAWC2 simulation tool.The main objectives of this paper are to investigate how different faults affect the performance of wind turbines for condition monitoring purposes and which differences exist in the structural responses between onshore and offshore floating wind turbines. Statistical analysis of the selected response parameters are conducted using the six1-hour stochastic samples for each load case.For condition monitoring purpose,the effects of faults on the responses at different wind speeds and fault amplitudes are investigated by comparing the same response under normal operation.The severities of the individual faults are categorized by the extreme values of structural loads and the structural components are sorted based on the magnitude of the fault effects on the extreme values.The pitch sensor fixed value fault is determined as the most severe fault case and the shaft appears as the structural component that experiences the highest risk.The effects of fault conditions on the offshore floating and the onshore wind turbines are compared to investigate the potential differences.The results showthat faults cause more damage to the tower and the yaw bearing for the onshore wind turbine and more damage to the shaft for the offshore floating wind turbine.
机译:本文分析了三种变桨控制器故障对陆上风力发电机和翼梁式海上浮动风力发电机的响应的影响。这些故障包括:叶片桨距致动器卡住,叶片桨距传感器的固定值故障和偏置故障。这些故障在控制器动态链接库中建模,并使用HAWC2仿真工具进行短期极端响应分析。本文的主要目的是研究不同的故障如何影响风力涡轮机的性能以进行状态监测,以及陆上和海上浮动式风力涡轮机在结构响应上存在哪些差异。使用每个负载工况的61小时随机样本对选定的响应参数进行统计分析。出于状态监测的目的,通过比较正常运行下相同响应对故障对不同风速和故障幅度响应的影响根据结构载荷的极端值对单个故障的严重程度进行分类,并根据故障对极端值的影响程度对结构部件进行分类。将螺距传感器固定值故障确定为最严重的故障情况,比较了断层条件对海上浮式和陆上风力涡轮机的影响,以研究潜在的差异。结果表明,断层对塔架和偏航轴承造成更大的损害。海上风力涡轮机,并且对海上浮动风力涡轮机的轴造成更多损坏ne。

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