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Field Demonstration of Real-Time Wind Turbine Foundation Strain Monitoring

机译:实时风力发电机基础应变监测现场演示

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摘要

Onshore wind turbine foundations are generally over-engineered as their internal stress states are challenging to directly monitor during operation. While there are industry drivers to shift towards more economical foundation designs, making this transition safely will require new monitoring techniques, so that the uncertainties around structural health can be reduced. This paper presents the initial results of a real-time strain monitoring campaign for an operating wind turbine foundation. Selected reinforcement bars were instrumented with metal packaged optical fibre strain sensors prior to concrete casting. In this paper, we outline the sensors’ design, characterisation and installation, and present 67 days of operational data. During this time, measured foundation strains did not exceed 95 μϵ, and showed a strong correlation with both measured tower displacements and the results of a foundation finite element model. The work demonstrates that real-time foundation monitoring is not only achievable, but that it has the potential to help operators and policymakers quantify the conservatism of their existing design codes.
机译:陆上风力涡轮机基础通常设计过度,因为其内部应力状态在运行期间直接监控具有挑战性。尽管有行业驱动力转向更经济的基础设计,但要安全地进行这种过渡将需要新的监视技术,从而可以减少围绕结构健康的不确定性。本文介绍了运行中的风力涡轮机基础实时应变监测活动的初步结果。在混凝土浇筑之前,将选定的钢筋用金属包装的光纤应变传感器进行检测。在本文中,我们概述了传感器的设计,特性和安装,并给出了67天的运行数据。在此期间,测得的基础应变不超过95μl,并且与测得的塔位移和基础有限元模型的结果均显示出很强的相关性。这项工作表明,实时地基监控不仅可以实现,而且还可以帮助运营商和决策者量化其现有设计规范的保守性。

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