Thermal convection of viscoelastic fluids in concentric rotating cylinders: Elastic turbulence and kinetic energy budget analysis
A. Chauhan, C. Sasmal

TL;DR
This study numerically investigates thermal convection in viscoelastic fluids within concentric rotating cylinders, revealing elastic turbulence phenomena and analyzing how viscoelasticity influences heat transfer across different convection modes.
Contribution
It provides a comprehensive analysis of elastic turbulence and kinetic energy transfer mechanisms affecting heat transfer in viscoelastic fluids under various convection modes.
Findings
Elastic turbulence appears at high Weissenberg numbers in free and mixed convection.
Viscoelasticity minimally affects heat transfer in forced and free convection.
Heat transfer increases in mixed convection with higher Weissenberg numbers due to energy transfer from polymers.
Abstract
The introduction of solid polymers into a Newtonian solvent induces significant modifications in the flow behavior and heat transfer characteristics of resulting viscoelastic fluids. This study performs a comprehensive numerical investigation on thermal convection within a system comprising two concentric horizontal cylinders filled with viscoelastic fluids, with the inner cylinder rotating. The analysis encompasses all three modes of thermal convection, namely, forced, free, and mixed convection, over a range of Weissenberg numbers up to 10 and three values of the Richardson number, namely, 0, 0.143, and , representing forced, mixed, and free convection modes of heat transfer, respectively. In forced convection, the flow field remains stable, while in free and mixed convection, an increase in the Weissenberg number leads to a transition from steady to unsteady periodic,…
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Taxonomy
TopicsRheology and Fluid Dynamics Studies · Nanofluid Flow and Heat Transfer · Fluid Dynamics and Turbulent Flows
