DETECTING BENDING AND IMPACT EVENTS IN A FIBER OPTIC CABLE USING DISTRIBUTED ACOUSTIC SENSING TO ASSESS POTENTIAL OFFSHORE POWER CABLE DAMGES

Jasper Ryvers, M. Callewaert, M. Loccufier, Wim De Waele
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Abstract

A key vulnerability of offshore energy production facilities are submarine power cables. Monitoring a power cable during its entire lifetime is a strategy to minimize critical damages. Submarine power cables contain fiber optic cables that can be used for monitoring purposes. In this paper we show that a recent fiber optic sensing technique (CP-ΦOTDR) [11] is capable of detecting bending and impact events in a fiber optic cable. It does so with a limited reproducibility however, which for impact events cannot be solely explained by the variability of the impact force. There is a slight signature present for impact events: identical impact force events correlate more than events belonging to non-identical forces. This work is a first step in developing a monitoring tool to help assess the severity of power cable damages due to incident impacts and critical bending states.
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利用分布式声学传感技术检测光纤电缆的弯曲和冲击事件,以评估潜在的海上电力电缆损坏
海上能源生产设施的一个关键弱点是海底电力电缆。在电力电缆的整个生命周期内对其进行监测是一种将临界损坏降到最低的策略。海底电力电缆包含可用于监测目的的光纤电缆。在本文中,我们展示了一种最新的光纤传感技术(CP-ΦOTDR)[11]能够检测光纤电缆中的弯曲和冲击事件。然而,这种方法的可重复性有限,对于撞击事件来说,不能仅仅用冲击力的可变性来解释。撞击事件有一个轻微的特征:相同的冲击力事件比不相同的冲击力事件更相关。这项工作是开发监测工具的第一步,该工具可以帮助评估由于意外撞击和临界弯曲状态造成的电力电缆损坏的严重程度。
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