School of Engineering, Robert Gordon University, Aberdeen AB10 7GJ, UK.
Department of Computer Science, Deramore Lane, University of York, Heslington, York YO10 5GH, UK.
Sensors (Basel). 2021 Sep 9;21(18):6047. doi: 10.3390/s21186047.
Oil and gas (O&G) explorations moving into deeper zones for enhanced oil and gas recovery are causing serious safety concerns across the world. The sensing of critical multiple parameters like high pressure, high temperature (HPHT), chemicals, etc., are required at longer distances in real-time. Traditional electrical sensors operate less effectively under these extreme environmental conditions and are susceptible to electromagnetic interference (EMI). Hence, there is a growing demand for improved sensors with enhanced measurement capabilities and also sensors that generates reliable data for enhanced oil and gas production. In addition to enhanced oil and gas recovery, the sensing technology should also be capable of monitoring the well bore integrity and safety. The sensing requirements of the O&G industry for improved sensing in deeper zones include increased transmission length, improved spatial coverage and integration of multiple sensors with multimodal sensing capability. This imposes problems like signal attenuation, crosstalks and cross sensitivities. Optical fibre-based sensors are expected to provide superior sensing capabilities compared to electrical sensors. This review paper covers a detailed review of different fibre-optic sensing technologies to identify a feasible sensing solution for the O&G industry.
为了提高石油和天然气的采收率,石油和天然气(O&G)勘探正在向更深的区域推进,这在全球范围内引发了严重的安全问题。需要实时远程感知高压、高温(HPHT)、化学物质等关键多参数。在这些极端环境条件下,传统的电气传感器的工作效果较差,并且容易受到电磁干扰(EMI)的影响。因此,人们对具有增强的测量能力的改进传感器以及能够生成可靠数据以提高石油和天然气产量的传感器的需求日益增长。除了提高石油和天然气采收率外,传感技术还应能够监测井筒的完整性和安全性。石油和天然气行业对深层区域改进传感的传感要求包括增加传输长度、改善空间覆盖范围以及将多个传感器与多模态传感能力集成。这带来了信号衰减、串扰和交叉灵敏度等问题。光纤传感器有望提供比电气传感器更优越的传感能力。本文综述了不同的光纤传感技术,以确定一种可行的石油和天然气行业传感解决方案。