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Crack Monitoring of Operational Wind Turbine Foundations

机译:运行中的风力发电机基础的裂纹监测

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摘要

The degradation of onshore, reinforced-concrete wind turbine foundations is usually assessed via above-ground inspections, or through lengthy excavation campaigns that suspend wind power generation. Foundation cracks can and do occur below ground level, and while sustained measurements of crack behaviour could be used to quantify the risk of water ingress and reinforcement corrosion, these cracks have not yet been monitored during turbine operation. Here, we outline the design, fabrication and field installation of subterranean fibre-optic sensors for monitoring the opening and lateral displacements of foundation cracks during wind turbine operation. We detail methods for in situ sensor characterisation, verify sensor responses against theoretical tower strains derived from wind speed data, and then show that measured crack displacements correlate with monitored tower strains. Our results show that foundation crack opening displacements respond linearly to tower strain and do not change by more than ±5 μ m. Lateral crack displacements were found to be negligible. We anticipate that the work outlined here will provide a starting point for real-time, long-term and dynamic analyses of crack displacements in future. Our findings could furthermore inform the development of cost-effective monitoring systems for ageing wind turbine foundations.
机译:陆上钢筋混凝土风力发电机基础的退化通常通过地面检查或通过中止风力发电的漫长挖掘活动进行评估。地基裂缝可以而且确实发生在地面以下,并且尽管可以对裂缝行为进行持续测量以量化进水和增强腐蚀的风险,但在涡轮机运行期间尚未对这些裂缝进行监测。在此,我们概述了地下光纤传感器的设计,制造和现场安装,以监测风力涡轮机运行期间基础裂缝的打开和横向位移。我们详细介绍了就地传感器表征的方法,验证了传感器对从风速数据得出的理论塔架应变的响应,然后表明测得的裂纹位移与监测到的塔架应变相关。我们的结果表明,基础裂缝开口位移对塔架应变线性响应,并且变化不超过±5μm。发现横向裂纹位移可忽略不计。我们预计这里概述的工作将为将来对裂缝位移的实时,长期和动态分析提供一个起点。我们的发现还可以为开发老化的风力发电机基础提供经济有效的监控系统。

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