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Improved asymptotic expansion method for laminar fluid flow and heat transfer in conical gaps with disks rotating

Igor V. Shevchuk (Fakultät für Informatik und Ingenieurwissenschaften, Technische Hochschule Koln, Gummersbach, Germany)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 10 August 2023

Issue publication date: 31 October 2023

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Abstract

Purpose

The purpose of this paper was to study laminar fluid flow and convective heat transfer in a conical gap at small conicity angles up to 4° for the case of disk rotation with a fixed cone.

Design/methodology/approach

In this paper, the improved asymptotic expansion method developed by the author was applied to the self-similar Navier–Stokes equations. The characteristic Reynolds number ranged from 0.001 to 2.0, and the Prandtl numbers ranged from 0.71 to 10.

Findings

Compared to previous approaches, the improved asymptotic expansion method has an accuracy like the self-similar solution in a significantly wider range of Reynolds and Prandtl numbers. Including radial thermal conductivity in the energy equation at small conicity angle leads to insignificant deviations of the Nusselt number (maximum 1.23%).

Practical implications

This problem has applications in rheometry to experimentally determine viscosity of liquids, as well as in bioengineering and medicine, where cone-and-disk devices serve as an incubator for nurturing endothelial cells.

Social implications

The study can help design more effective devices to nurture endothelial cells, which regulate exchanges between the bloodstream and the surrounding tissues.

Originality/value

To the best of the authors’ knowledge, for the first time, novel approximate analytical solutions were obtained for the radial, tangential and axial velocity components, flow swirl angle on the disk, tangential stresses on both surfaces, as well as static pressure, which varies not only with the Reynolds number but also across the gap. These solutions are in excellent agreement with the self-similar solution.

Keywords

Citation

Shevchuk, I.V. (2023), "Improved asymptotic expansion method for laminar fluid flow and heat transfer in conical gaps with disks rotating", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 33 No. 11, pp. 3770-3800. https://doi.org/10.1108/HFF-06-2023-0318

Publisher

:

Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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