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A Review of Hybrid Fiber-Optic Distributed Simultaneous Vibration and Temperature Sensing Technology and Its Geophysical Applications

机译:分布式光纤同时振动与温度传感混合技术及其地球物理应用研究进展

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摘要

Distributed sensing systems can transform an optical fiber cable into an array of sensors, allowing users to detect and monitor multiple physical parameters such as temperature, vibration and strain with fine spatial and temporal resolution over a long distance. Fiber-optic distributed acoustic sensing (DAS) and distributed temperature sensing (DTS) systems have been developed for various applications with varied spatial resolution, and spectral and sensing range. Rayleigh scattering-based phase optical time domain reflectometry (OTDR) for vibration and Raman/Brillouin scattering-based OTDR for temperature and strain measurements have been developed over the past two decades. The key challenge has been to find a methodology that would enable the physical parameters to be determined at any point along the sensing fiber with high sensitivity and spatial resolution, yet within acceptable frequency range for dynamic vibration, and temperature detection. There are many applications, especially in geophysical and mining engineering where simultaneous measurements of vibration and temperature are essential. In this article, recent developments of different hybrid systems for simultaneous vibration, temperature and strain measurements are analyzed based on their operation principles and performance. Then, challenges and limitations of the systems are highlighted for geophysical applications.
机译:分布式传感系统可以将光缆转换成传感器阵列,从而允许用户以长距离的精细空间和时间分辨率检测和监视多个物理参数,例如温度,振动和应变。光纤分布式声感测(DAS)和分布式温度感测(DTS)系统已开发用于具有各种空间分辨率,光谱和感测范围的各种应用。在过去的二十年中,已经开发出用于振动的基于瑞利散射的相位光学时域反射仪(OTDR)和用于温度和应变测量的基于拉曼/布里渊散射的OTDR。关键的挑战是找到一种方法,该方法能够以高灵敏度和空间分辨率,但在可接受的动态振动和温度检测频率范围内,沿着传感光纤的任何点确定物理参数。有许多应用,特别是在地球物理和采矿工程中,必须同时测量振动和温度。在本文中,基于其运行原理和性能,分析了同时进行振动,温度和应变测量的不同混合系统的最新发展。然后,针对地球物理应用强调了系统的挑战和局限性。

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