Al Handawi Khalil, Vahdati Nader, Shiryayev Oleg, Lawand Lydia
Department of Mechanical Engineering, Khalifa University of Science and Technology, Petroleum Institute, P.O. Box 2533 Abu Dhabi, UAE.
Sensors (Basel). 2017 Sep 28;17(10):2227. doi: 10.3390/s17102227.
Pipelines are the main transportation means for oil and gas products across large distances. Due to the severe conditions they operate in, they are regularly inspected using conventional Pipeline Inspection Gages (PIGs) for corrosion damage. The motivation for researching a real-time distributed monitoring solution arose to mitigate costs and provide a proactive indication of potential failures. Fiber optic sensors with polymer claddings provide a means of detecting contact with hydrocarbons. By coating the fibers with a layer of metal similar in composition to that of the parent pipeline, corrosion of this coating may be detected when the polymer cladding underneath is exposed to the surrounding hydrocarbons contained within the pipeline. A Refractive Index (RI) change occurs in the polymer cladding causing a loss in intensity of a traveling light pulse due to a reduction in the fiber's modal capacity. Intensity losses may be detected using Optical Time Domain Reflectometry (OTDR) while pinpointing the spatial location of the contact via time delay calculations of the back-scattered pulses. This work presents a theoretical model for the above sensing solution to provide a design tool for the fiber optic cable in the context of hydrocarbon sensing following corrosion of an external metal coating. Results are verified against the experimental data published in the literature.
管道是油气产品长距离运输的主要方式。由于其运行条件恶劣,通常使用传统的管道检测规(PIG)对其进行腐蚀损伤检测。研究实时分布式监测解决方案的动机是为了降低成本,并提前预警潜在故障。带有聚合物包层的光纤传感器提供了一种检测与碳氢化合物接触的方法。通过在光纤上涂覆一层成分与母管道相似的金属,当下面的聚合物包层暴露于管道内的周围碳氢化合物时,可以检测到该涂层的腐蚀。聚合物包层中会发生折射率(RI)变化,由于光纤模式容量的降低,导致传播光脉冲强度损失。可以使用光时域反射仪(OTDR)检测强度损失,同时通过对后向散射脉冲的时间延迟计算来确定接触的空间位置。这项工作提出了上述传感解决方案的理论模型,以便在外部金属涂层腐蚀后的碳氢化合物传感背景下为光缆提供设计工具。结果与文献中公布的实验数据进行了验证。