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An experimental study on the effect of gas injection configuration on flow characteristics in high viscosity oil columns

Mohammed, Shara K.; Hasan, Abbas H.; Ibrahim, Abubakr; Dimitrakis, Georgios

Authors

Shara K. Mohammed

Abubakr Ibrahim

Georgios Dimitrakis



Abstract

Gas-viscous liquid bubbly and slug flow are very common in petroleum, chemical, bioengineering, polymer, and food processing. However, there is a major knowledge gap in two-phase flow research in the design of gas injectors/distributers in very high viscosity oil systems. The present study investigates the effect of gas injection methods in columns containing very high viscosity oils (i.e., realistic liquids), and more specifically using 360 Pa · s viscosity oil in a 240-mm diameter column. The effects that the radial positioning, number of gas nozzles, and their distance from each other have on the structure of the flow in viscous liquids are presented in detail. Electrical capacitance tomography (ECT) is used to extract experimental data. Void fraction, bubble velocity, frequency, liquid film thickness, and bubble length were measured and analyzed at different radial gas injection positions. It has been observed that bubble length increases significantly by 0.3 m when the injection nozzle is located next to the wall of the pipe. Bubble velocity and length also increase by 0.217 m/s and 3.6 m, respectively, with increasing gas flowrate when multiple injection points are used. Increasing the distance between the gas injection points increased bubbles' length by 1.2 m. Bubbles' velocity and frequency (at higher gas flow rate) were also increased.

Citation

Mohammed, S. K., Hasan, A. H., Ibrahim, A., & Dimitrakis, G. (in press). An experimental study on the effect of gas injection configuration on flow characteristics in high viscosity oil columns. The Canadian journal of chemical engineering, https://doi.org/10.1002/cjce.24312

Journal Article Type Article
Acceptance Date Aug 5, 2021
Online Publication Date Sep 2, 2021
Deposit Date Apr 28, 2022
Publicly Available Date May 4, 2022
Journal Canadian Journal of Chemical Engineering
Print ISSN 0008-4034
Electronic ISSN 1939-019X
Publisher Wiley
Peer Reviewed Peer Reviewed
DOI https://doi.org/10.1002/cjce.24312
Keywords Capacitance tomography; Large diameter; Nozzles; Oil gas flow; Viscous oils
Public URL https://hull-repository.worktribe.com/output/3985176

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Publisher Licence URL
https://creativecommons.org/licenses/by-nc-nd/4.0/

Copyright Statement
© 2021 The Authors. The Canadian Journal of Chemical Engineering published by Wiley Periodicals LLC on behalf of Canadian Society for Chemical Engineering.

This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.




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