Computational study on drilling mud flow through wellbore annulus by Giesekus viscoelastic model

Author:

Amir Hasani Mohammad1ORCID,Norouzi Mahmood1,Larimi Morsal Momeni2,Rooki Reza3

Affiliation:

1. Department of Mechanical Engineering, Shahrood University of Technology, Shahrood, Iran

2. Faculty of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran

3. Department of Mining Engineering, Birjand University of Technology, Birjand, Iran

Abstract

Cuttings transport from wellbore annulus to the surface via drilling fluids is one of the most important problems in gas and oil industries. In the present paper, the effects of viscoelastic property of drilling fluids on flow through wellbore annulus are studied numerically by use of computational fluid dynamics simulation in OpenFOAM software. This problem is simulated as the flow between two coaxial annulus cylinders and the inner cylinder is rotating through its axes. Here, the Giesekus model is used as the nonlinear constitutive equation. This model brings the nonlinear viscosity, normal stress differences, extensional viscosity and elastic property. The numerical solution is obtained using the second order finite volume method by considering PISO algorithm for pressure correction. The effect of elasticity, Reynolds number, Taylor number and mobility factor on the velocity and stress fields, pressure drop, and important coefficient of drilling mud flow is studied in detail. The results predicted that increasing elastic property of drilling mud lead to an initial sharp drop in the axial pressure gradient as well as Darcy-Weisbach friction coefficient. Increasing the Reynolds number at constant Taylor number, resulted an enhancing in the axial pressure drop of the fluid but Darcy-Weisbach [Formula: see text] friction coefficient mainly reduced.

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference38 articles.

1. Bourgoyne AT, Millheim KK, Chenevert ME, et al. Applied drilling engineering. 1st ed. Houston: Society of Petroleum Engineers, 1986, pp. 122–156.

2. Non-Newtonian Flow in Annuli

3. Solution of Some Problems in the Exact Theory of Visco-Elasticity

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