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RFID wireless system for detection of water in the annulus of a flexible pipe

机译:RFID无线系统,用于检测柔性管的环形水中的水

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Corrosive environments are responsible for the highest degree of degradation and failure in marine structures. The presence of sea water in marine structures such as flexible pipes can cause a significant reduction in their operational life, especially when associated with permeated gases, which could lead to corrosion related failure mechanisms such as corrosion-fatigue and hydrogen cracking. The ingress of sea water into flexible pipes can occur either due to ruptures in their external polymeric sheath or to permeation of condensed water from the pipe bore. This event since flooding of the so-called annular space of flexible pipes is the trigger for all knows corrosion assisted failure modes, it is clear that a system that is able to reliably detect the presence of water in the structure is highly desirable. This work will describe a radio frequency identification (RFID) system designed for this purpose; it relies on the measurement of shifts in the resonance frequency of specially-designed tags which would be inserted within the layers of the flexible pipe during manufacturing. This paper shows the design and validation process of these tags and also of a reader which is meant to be scanned along the outside surface of the pipe by a remotely-operated vehicle (ROV). The study was performed through a finite element analysis and a test in which the tags were inserted within a full-scale mock-up of a flexible riser, which was then flooded with synthetic seawater. Results show that the shift in response due to sea water is clearly identifiable and distinguishable from other effects.
机译:腐蚀性环境负责海洋结构的最高程度的退化和失败。诸如柔性管等海洋结构中海水的存在可能导致其运行寿命显着降低,特别是当与渗透气体相关时,这可能导致腐蚀相关的失效机制,例如腐蚀 - 疲劳和氢气裂缝。由于其外部聚合物护套的破裂或从管孔中渗透冷凝水,将海水进入柔性管的进入。这一事件由于柔性管道所谓的环形空间的洪水是所有了解腐蚀辅助失效模式的触发器,很明显是能够可靠地检测该结构中水的存在的系统。这项工作将描述为此目的设计的射频识别(RFID)系统;它依赖于在制造期间将插入柔性管的层内的特定设计标签中的偏移频率的变化的测量。本文示出了这些标签的设计和验证过程以及读取器的设计和验证过程,其意味着通过远程操作的车辆(ROV)沿管的外表面扫描。该研究是通过有限元分析进行的,并且在柔性立管的全规模模拟中插入标签的测试,然后用合成海水淹没。结果表明,由于海水响应的转变明显可识别,可区分其他效应。

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