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Finite Element Analysis of Crack Growth for Structural Health Monitoring of Mooring Chains using Ultrasonic Guided Waves and Acoustic Emission

机译:超声波引导波和声发射的系泊链结构健康监测结构健康监测有限元分析

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As offshore oil and gas exploration and production goes further afield and into deeper waters, more offshore operations, are conducted from floating platforms, which are moored to the seabed by chains, polyester tether lines, or combinations of both. Moreover, the forecasted large scale deployment of offshore renewable energy systems in deep water will rely upon similar mooring systems. Mooring lines are safety-critical systems on offshore floating and semi-submersible platforms. The lines are usually subject to immense environmental and structural forces such as currents, oceans waves, and hurricanes. Other forces include impact with the seabed, abrasion, increased drag due to accumulation of marine organisms and salt water corrosion. Failure of one or more of mooring lines can result in disastrous consequences for safety, the environment and production. Mooring chain life can be significantly reduced, leading to unacceptable risk of catastrophic failure, if early damage is not detected. Chain mounted equipment is available to monitor chain tension and bending, but detection of damage caused by stress concentrations, fatigue, corrosion and fretting or combinations of these is not currently possible. The Ultrasonic Guided Waves (UGW) and Acoustic Emission (AE) techniques are capable of detecting cracks in mooring chains and fatigue damage. This paper describes a methodology of Finite Element Analysis (FEA) for crack initiation and crack growth simulation for Structural Health Monitoring (SHM) applying UGW and AE.
机译:由于海上石油和天然气勘探和生产进一步走强,进入更深的水域,更多的海上业务,从浮动平台进行,这些浮动平台被停泊在海底,涤纶系绳线或两者的组合。此外,深水中海外可再生能源系统的预测大规模部署将依靠类似的系泊系统。系泊线是海上浮动和半潜式平台上的安全关键系统。这些线通常受到巨大的环境和结构力,如电流,海洋波浪和飓风。其他力包括由于海洋生物和盐水腐蚀的积累而与海底磨损,增加的阻力。一个或多个系泊线的失败可能导致安全,环境和生产的灾难性后果。停泊链寿命可以显着降低,导致灾难性失败的风险不可接受,如果未检测到早期损坏。链式安装设备可用于监测链条张力和弯曲,但目前不可能检测由应力浓度,疲劳,腐蚀和烦恼或组合引起的损坏。超声波引导波(UGW)和声学发射(AE)技术能够检测系泊链中的裂缝和疲劳损坏。本文介绍了用于施加UGW和AE的结构健康监测(SHM)的裂纹启动和裂纹增长模拟的有限元分析(FEA)的方法。

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