Buerck J, Roth S, Kraemer K, Mathieu H
Forschungszentrum Karlsruhe, Institut für Instrumentelle Analytik-IFIA, PO Box 3640, D-76021 Karlsruhe, Germany.
J Hazard Mater. 2003 Aug 15;102(1):13-28. doi: 10.1016/s0304-3894(03)00199-7.
A distributed sensing system for apolar hydrocarbons is presented which is built from a polymer-clad silica fiber adapted to an optical time domain reflectometer (OTDR) set-up. OTDR measurements allow locating and detecting chemicals by measuring the time delay between short light pulses entering the fiber and discrete changes in the backscatter signals that are caused by local extraction of hydrocarbons into the fiber cladding. The light guiding properties of the fiber are affected by interaction of the extracted chemicals with the evanescent wave light field extending into the fiber cladding. Distributed sensing of pure liquid hydrocarbons (HC) and aqueous HC solutions with a commercially available mini-OTDR adapted to sensing fibers of up to 1km length could be demonstrated. A pulsed laser diode emitting at the 850 nm telecommunication wavelength was applied in the mini-OTDR to locate the HCs by analyzing the step drop (light loss) in the backscatter signal, which is induced by local refractive index (RI) increase in the silicone cladding due to the extracted HC. The prototype instrument can be applied for monitoring hydrocarbon leakage in large technical installations, such as tanks, chemical pipelines or chemical waste disposal containments.
本文介绍了一种用于非极性碳氢化合物的分布式传感系统,该系统由适配于光时域反射仪(OTDR)设置的聚合物包覆石英光纤构建而成。OTDR测量通过测量短光脉冲进入光纤与后向散射信号中的离散变化之间的时间延迟来定位和检测化学物质,而后向散射信号的离散变化是由碳氢化合物局部萃取到光纤包层中引起的。光纤的导光特性会受到萃取的化学物质与延伸到光纤包层中的倏逝波光场相互作用的影响。利用适配长度达1km传感光纤的商用微型OTDR,已证明可对纯液态碳氢化合物(HC)和HC水溶液进行分布式传感。微型OTDR中采用了在850nm电信波长发射的脉冲激光二极管,通过分析后向散射信号中的阶跃下降(光损耗)来定位HC,该阶跃下降是由萃取的HC导致硅酮包层中局部折射率(RI)增加引起的。该原型仪器可用于监测大型技术设施中的碳氢化合物泄漏,如储罐、化学管道或化学废物处理容器。