Rapid thermalization by adaptive flow reorientation

Abstract Aim of this paper is the enhancement of scalar transport (heat, chemical species) in flow systems with reorientations of a laminar base flow. Conventional heating/mixing protocols comprise of temporal or spatial periodic reorientations of these base flows to promote fluid mixing. However, t...

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Bibliographic Details
Published inJournal of physics. Conference series Vol. 2116; no. 1; pp. 12114 - 12117
Main Authors Lensvelt, R, Speetjens, M F M, Nijmeijer, H
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.11.2021
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Summary:Abstract Aim of this paper is the enhancement of scalar transport (heat, chemical species) in flow systems with reorientations of a laminar base flow. Conventional heating/mixing protocols comprise of temporal or spatial periodic reorientations of these base flows to promote fluid mixing. However, thermal homogenisation rates of scalar fields are not necessarily accelerated with these approaches due to the substantial effect of diffusion and/or chemical reactions on heat/chemical transport. In the present study we numerically study heat transport with an adaptive approach for an entire parameter space of fluid and flow properties. Key to the approach is real-time control of the fluid flow based on the scalar field due to an efficient numerical model. Results show that the adaptive approach can significantly enhance heat transport over the conventional periodic heating/mixing approach designed for efficient mixing.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/2116/1/012114