Abstract
The work aims to numerically evaluate different injection configurations for the analysis of a two-phase flow behavior and evolution through a staggered Y-junction pipeline. To minimize agglomeration between inlets, the injection zones have a separation distance, avoiding areas with eddies or swirls owing to strong turbulence. Six input scenarios were examined accordingly with injection system experimental data. Results show significant variations because the main fluid develops a swirl over the pipe center. This is generated immediately after the phases’ supply zone due to the oil-phase because it presents a partial pipe flooding, even in the water injection zone. Moreover, the supply configuration has significant relevance to the main flow development. Accordingly, many flow patterns can be achieved depending on the phases’ confluence coming from the supply system. The interface velocities confirm the transition process and flow pattern development, which are driven by the phases’ velocities describing the early stages of three flow patterns formed during the fluids’ confluence. Finally, a substantial extent of the conjunction process points out that caution must be exercised during the injection supply system selection for this type of junction pipeline to achieve a better, and smooth blend, with either narrow, medium, or wide emulsions.
Funder
Mexican CONACYT-SENER-Hidrocarburos
European Union’s Horizon 2020 Programme under the ENERXICO Project
Subject
Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry
Reference51 articles.
1. Kowalska, G., Baj, T., Kowalski, R., and Szymańska, J. Optimization of Glycerol–Water Extraction of Selected Bioactive Compounds from Peppermint and Common Nettle. Antioxidants, 2021. 10.
2. Bertero, L., DiLullo, A., Lentini, A., and Terzi, L. Innovative way to produce and transport heavy oil through dispersion in water: Laboratory study and field test results. Proceedings of the SPE Annual Technical Conference and Exhibition.
3. Flow pattern transitions in two-phase liquid-liquid flow in horizontal tubes;Brauner;Int. J. Multiph. Flow,1992
4. Modeling of phase inversion phenomenon in two-phase pipe flows;Brauner;Int. J. Multiph. Flow,2002
5. Drift-Flux Modeling of Two-Phase Flow in Wellbores;Shi;SPE J.,2005
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献