Ali Sharifah, Jin Ge, Fan Yilin
Petroleum Engineering Department, Colorado School of Mines, Golden, CO 80401, USA.
Geophysics Department, Colorado School of Mines, Golden, CO 80401, USA.
Sensors (Basel). 2024 May 25;24(11):3402. doi: 10.3390/s24113402.
This article discusses the use of distributed acoustic sensing (DAS) for monitoring gas-liquid two-phase slug flow in horizontal pipes, using standard telecommunication fiber optics connected to a DAS integrator for data acquisition. The experiments were performed in a 14 m long, 5 cm diameter transparent PVC pipe with a fiber cable helically wrapped around the pipe. Using mineral oil and compressed air, the system captured various flow rates and gas-oil ratios. New algorithms were developed to characterize slug flow using DAS data, including slug frequency, translational velocity, and the lengths of slug body, slug unit, and the liquid film region that had never been discussed previously. This study employed a high-speed camera next to the fiber cable sensing section for validation purposes and achieved a good correlation among the measurements under all conditions tested. Compared to traditional multiphase flow sensors, this technology is non-intrusive and offers continuous, real-time measurement across long distances and in harsh environments, such as subsurface or downhole conditions. It is cost-effective, particularly where multiple measurement points are required. Characterizing slug flow in real time is crucial to many industries that suffer slug-flow-related issues. This research demonstrated the DAS's potential to characterize slug flow quantitively. It will offer the industry a more optimal solution for facility design and operation and ensure safer operational practices.
本文讨论了利用分布式声学传感(DAS)技术监测水平管道中气液两相段塞流的方法,该方法使用连接到DAS积分器的标准电信光纤进行数据采集。实验在一根14米长、5厘米直径的透明PVC管中进行,光纤电缆螺旋缠绕在管道上。利用矿物油和压缩空气,该系统获取了不同的流速和气油比。开发了新的算法,利用DAS数据来表征段塞流,包括段塞频率、平移速度以及段塞体、段塞单元和液膜区域的长度,这些内容此前从未被讨论过。本研究在光纤传感段旁边使用了高速摄像机进行验证,在所有测试条件下测量结果之间都具有良好的相关性。与传统的多相流传感器相比,该技术是非侵入性的,能够在长距离和恶劣环境(如地下或井下条件)下进行连续、实时测量。它具有成本效益,特别是在需要多个测量点的情况下。实时表征段塞流对许多受段塞流相关问题困扰的行业至关重要。这项研究证明了DAS在定量表征段塞流方面的潜力。它将为行业提供更优化的设施设计和运营解决方案,并确保更安全的操作实践。