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2023 | OriginalPaper | Chapter

Heat Transfer and Second Law Analysis of Ag-Water Nanoliquid in a Non-Uniformly Heated Porous Annulus

Authors : H. A. Kumara Swamy, M. Sankar, N. Keerthi Reddy, S. R. Sudheendra

Published in: Frontiers in Industrial and Applied Mathematics

Publisher: Springer Nature Singapore

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Abstract

The chapter delves into the intricate dynamics of heat transfer and entropy generation in a porous annulus filled with Ag-water nanoliquid, subjected to nonuniform thermal conditions. It begins by highlighting the significance of such studies in various industrial applications, including aeronautics and nuclear reactors. The analysis focuses on the impact of nonuniform thermal distribution on heat transfer performance, drawing from previous research that indicates enhanced thermal transport under such conditions. The study introduces the concept of nanoliquids, which improve thermal conductivity, and examines the influence of nanoparticle volume fraction on fluid flow and heat transfer rates. The chapter also explores the role of entropy minimization in enhancing system efficiency and provides a detailed mathematical framework for the analysis. Through numerical simulations, the authors investigate the effects of Rayleigh number, Darcy number, phase deviation, and nanoparticle volume fraction on flow patterns, heat dissipation rates, and entropy production. The results offer valuable insights into optimizing thermal systems and contribute to the understanding of nanoliquid behavior under complex thermal conditions.

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Metadata
Title
Heat Transfer and Second Law Analysis of Ag-Water Nanoliquid in a Non-Uniformly Heated Porous Annulus
Authors
H. A. Kumara Swamy
M. Sankar
N. Keerthi Reddy
S. R. Sudheendra
Copyright Year
2023
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-7272-0_14

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