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DETECTING CRITICAL SCOUR DEVELOPMENTS AT MONOPILE FOUNDATIONS UNDER OPERATING CONDITIONS

机译:在操作条件下检测纪用基础的关键冲刷发展

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Early warning systems for critical conditions at offshore wind turbines are needed to reduce maintenance costs and avoid catastrophic failures. Monitoring of the critical scour development at monopile foundations is commonly done with cost-intensive scour depth measurements. The scour condition is regarded critical when the depth exceeds the maximum allowed design scour depth during normal operation or due to a severe storm. This practice can lead to high maintenance costs and potentially unnecessary maintenance activities such as refilling of the scour hole or reconstruction of the scour protection. Instead, the exploitation of the structural reserves of fatigue driven monopile foundation designs stemming from design assumption versus real site conditions is suggested. Damage accumulation is highly influenced by the time behaviour of the transient scouring and real soil properties. This paper elaborates on novel low cost monitoring methods to detect when a scour development is truly critical when taking site conditions into account. A combination of fatigue monitoring and natural frequency supervision is proposed for critical scour identification in the framework of an early warning system.
机译:需要在海上风力涡轮机的临界条件进行预警系统,以降低维护成本并避免灾难性失败。监测Monopile基金会的临界冲刷开发通常采用成本密集的冲刷深度测量来完成。当深度超过正常操作期间或由于严重风暴时,深度超过允许的最大设计时,冲泡条件很重要。这种做法可能导致高维护成本和可能是不必要的维护活动,例如重新填充冲泡孔或修复防护防护。相反,提出了利用疲劳驱动的幂初级设计的结构储备,这些设计源于设计假设与真实位点条件。损伤积累受到瞬态冲洗和实际土壤性质的时间行为的影响。本文详细说明了新颖的低成本监测方法,以检测在考虑场地条件时何时何时至关重要。提出了疲劳监测和自然频率监控的组合,以便在预警系统框架中进行关键酷刑识别。

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