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Wireless concrete strength monitoring of wind turbine foundations

机译:风力发电机基础的无线混凝土强度监测

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摘要

Wind turbine foundations are typically cast in place, leaving the concrete to mature under environmental conditions that vary in time and space. As a result, there is uncertainty around the concrete’s initial performance, and this can encourage both costly over-design and inaccurate prognoses of structural health. Here, we demonstrate the field application of a dense, wireless thermocouple network to monitor the strength development of an onshore, reinforced-concrete wind turbine foundation. Up-to-date methods in fly ash concrete strength and maturity modelling are used to estimate the distribution and evolution of foundation strength over 29 days of curing. Strength estimates are verified by core samples, extracted from the foundation base. In addition, an artificial neural network, trained using temperature data, is exploited to estimate distributed concrete strengths using only sparse thermocouple data. Our techniques provide a practical alternative to computational models, and could assist site operators in making more informed decisions about foundation design, construction, operation and maintenance.
机译:风力发电机的地基通常是在现场浇铸的,从而使混凝土在随时间和空间变化的环境条件下成熟。结果,混凝土的初始性能存在不确定性,这可能会导致成本高昂的过度设计和结构健康状况的不正确预测。在这里,我们演示了密集的无线热电偶网络在现场的应用,以监控陆上钢筋混凝土风力发电机基础的强度发展。粉煤灰混凝土强度和成熟度模型的最新方法用于估计固化29天后基础强度的分布和演变。强度估算值通过从基础提取的核心样本进行验证。另外,利用温度数据进行训练的人工神经网络仅利用稀疏的热电偶数据来估计分布的混凝土强度。我们的技术为计算模型提供了一种实用的替代方法,并且可以帮助站点运营商就基础设计,建造,运营和维护做出更明智的决策。

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