Vertical cementing displacement flows of shear-thinning fluids

Author:

Zhang RuiziORCID,Ghorbani MaryamORCID,Wong Sungshuen,Frigaard Ian A.12ORCID

Affiliation:

1. Department of Mechanical Engineering, University of British Columbia 1 , 2054-6250 Applied Science Lane, Vancouver, British Columbia V6T 1Z4, Canada

2. Department of Mathematics, University of British Columbia 3 , 1984 Mathematics Rd., Vancouver, British Columbia V6T 1Z2, Canada

Abstract

We present a comprehensive study on the displacement flows of shear-thinning (power-law) fluids in a vertical eccentric annulus, employing both experimental and computational methods. This is a sequel to our previous studies [R. Zhang and I. Frigaard, J. Fluid Mech. 947, A32 (2022); R. Zhang and I. Frigaard, J. Fluid Mech. 972, A38 (2023)], which primarily discussed about the dispersive effects for the displacement flow of two Newtonian fluids. The same set of criteria has been applied to determine a steady/unsteady and dispersive/non-dispersive front. The overall classification map broadly aligns with findings from the Newtonian study, while also offering additional information due to the extreme viscosity ratio present. Our observations reveal that the flow behavior is significantly influenced by both the buoyancy force (b) and the viscosity ratio (M). Specifically, higher values of either b or M tend to induce a more steady and non-dispersive regime. Moreover, we have examined intriguing viscosity effects including viscosity dominant flows and viscous driven instabilities. Shear-thinning effects have also been observed and investigated in this study.

Funder

RES'EAU-WaterNET

Norwegian Research Council

Publisher

AIP Publishing

Subject

Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering

Reference68 articles.

1. 3D simulation of surface casing cementing: Dispersion effects,2021

2. Primary cementing of vertical wells: Displacement and dispersion effects in narrow eccentric annuli;J. Fluid Mech.,2022

3. Experimental study of displacement flows in a vertical eccentric annulus,2022

4. Primary cementing of vertical wells: Displacement and dispersion effects in narrow eccentric annuli—Part 2: Flow behaviour classification;J. Fluid Mech.,2023

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