The volumetric flow rate for the steady flow of power-law and Bingham-plastic fluids in eccentric annuli is presented as a series of dimensionless plots. The plots cover a broad range of fluid properties, pipe diameters, eccentricity, and pressure drop. These relationships were obtained by numerically integrating the velocity profile resulting from a finite difference solution of the equations of continuity and motion after transformation into bipolar coordinates. The numerical procedure was verified by comparing calculations with previously published results for the special cases of Newtonian flow in an eccentric annulus and non-Newtonian flow in a concentric annulus and with limited experimental data for Bingham-plastic flow in an eccentric annulus.
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May 1975
This article was originally published in
Journal of Engineering for Industry
Research Papers
Laminar Flow of Non-Newtonian Fluids in an Eccentric Annulus
T. L. Guckes
T. L. Guckes
Production Operations Division, Esso Production Research Co., Houston, Texas
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T. L. Guckes
Production Operations Division, Esso Production Research Co., Houston, Texas
J. Eng. Ind. May 1975, 97(2): 498-506
Published Online: May 1, 1975
Article history
Received:
July 3, 1974
Online:
July 15, 2010
Citation
Guckes, T. L. (May 1, 1975). "Laminar Flow of Non-Newtonian Fluids in an Eccentric Annulus." ASME. J. Eng. Ind. May 1975; 97(2): 498–506. https://doi.org/10.1115/1.3438611
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