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Capability of dual-modality electrical tomography for gas-oil-water three-phase pipeline flow visualisation

机译:天然油三相管道流动可视化双式模态电断层扫描的能力

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Numerous dual-modality tomography systems have previously been studied for multiphase flow characterisation, however, the capability of the majority of these systems was only demonstrated under limited flow regime conditions, such as stratified flow and slug flow. This paper reports a dual-modality electrical tomography for visualisation of industrial-scale, horizontal gas-oil-water three-phase flows. Experimental conditions include water-to-liquid ratio (WLR) from 0% to 100% in parallel with gas volume fractions (GVF) from 0% to 100%, which produced a variety of flow patterns, typically stratified flow, slug flow, plug flow, bubbly flow, and annular flow. A commercial dual-modality electrical tomographic system was utilised to carry out the measurement. A threshold-based data fusion method was also deployed for the fusion of oil-continuous and water-continuous data to provide full three phase images. The tomography visualisation is validated against optical photographs derived from a high-speed video logger located one diameter upstream of the device. The results demonstrate that a subcomponent of the dual modality sensor, an electrical resistance tomography (ERT) system, is able to visualise water continuous flow with WLR higher than 40%, providing good agreement with previous reports. The remaining subcomponent, the electrical capacitance tomography (ECT) system, is able to provide stable measurement during WLR from 0% to 90%, which is far beyond initial expectations and previous findings. Mean concentrations measured with the dual-modality system reveal the potential capability of the tomography system for phase fraction measurement. The visualisation results with the advanced data fusion method and mean concentration measurement verify the capability of the system in the application of gas-oil-water flow characterisation.
机译:先前已经研究了许多双模断层摄影系统,以进行多相流动表征,然而,大多数这些系统的能力仅在有限的流动方案条件下证明,例如分层流动和块状流动。本文报道了一种用于可视化工业规模,水平气体油水三相流动的双模色断层扫描。实验条件包括与气体体积分数(GVF)平行的0%至100%的水 - 液比(WLR),从0%至100%,这产生了各种流动图案,通常分层流动,块状物,塞子流动,起泡流动和环形流动。使用商业双模电动断层切断系统进行测量。还部署了基于阈值的数据融合方法,用于融合油连续和水连续数据,以提供完整的三相图像。根据从位于设备上游的一个直径的高速视频记录器导出的光学照片验证断层扫描可视化。结果表明,双模态传感器,电阻断层扫描(ERT)系统的子组件能够以高于40%的WLR可视化水连续流量,提供与先前报告的良好协议。剩余的子组件,电容断层扫描(ECT)系统,能够在WLR期间提供稳定的测量,从0%到90%,远远超出了初始期望和先前的发现。用双模态系统测量的平均浓度揭示了断层摄影系统进行相位分数测量的潜在能力。随着先进的数据融合方法和平均浓度测量的可视化结果验证了系统在储气 - 水流量表征中的能力。

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