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Transient response of buried oil pipelines fiber optic leak detector based on the distributed temperature measurement

机译:基于分布式温度测量的地下输油管道光纤泄漏探测器的瞬态响应

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摘要

Oil leakage of transportation pipelines causes a change in its environmental temperature. This effect is employed to detect the leakage and its positions. The Raman Optical Time Domain Reflectometer (ROT-DR) and Brillouin Optical Time Domain Amplifier (BOTDA) sensors are two of the most precise oil pipeline leak detector systems operate based on this effect. The position of leakage is determined by the time difference between the sending and backscattered laser pulses. In this paper, the transient response of BOTDA and ROTDR sensors are obtained through solution of the mass, energy and heat transfer in soil and fiber cable. It is shown that the mechanical rise time is of the order of a few minutes, which is in agreement with the experimental results of BOTDA and ROTDR sensors. Ultimately, on the basis of the heat transfer results, a method for leak flow rate measurement by the optical fiber leak sensors is proposed.
机译:运输管道的漏油会导致其环境温度发生变化。利用这种效果来检测泄漏及其位置。拉曼光学时域反射仪(ROT-DR)和布里渊光学时域放大器(BOTDA)传感器是基于这种效果而运行的最精确的两个石油管道泄漏检测器系统。泄漏的位置取决于发射激光脉冲和反向散射激光脉冲之间的时间差。本文通过解决土壤和光缆中的质量,能量和热传递来获得BOTDA和ROTDR传感器的瞬态响应。结果表明,机械上升时间约为几分钟,这与BOTDA和ROTDR传感器的实验结果一致。最终,基于传热结果,提出了一种通过光纤泄漏传感器测量泄漏流量的方法。

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