PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2006

A correlation for interfacial heat transfer coefficient for turbulent flow over an array of square rods

Authors

Saito, Marcelo B.

Journal of Heat Transfer , vol. 128 , no. 5 , pp. 444-452

ISSN: 00221481

114
Citations
2
Authors

Abstract

Interfacial heat transfer coefficients in a porous medium modeled as a staggered array of square rods are numerically determined. High and low Reynolds k-ε turbulence models are used in conjunction of a two-energy equation model, which includes distinct transport equations for the fluid and the solid phases. The literature has documented proposals for macroscopic energy equation modeling for porous media considering the local thermal equilibrium hypothesis and laminar flow. In addition, two-energy equation models have been proposed for conduction and laminar convection in packed beds. With the aim of contributing to new developments, this work treats turbulent heat transport modeling in porous media under the local thermal nonequilibrium assumption. Macroscopic time-average equations for continuity, momentum, and energy are presented based on the recently established double decomposition concept (spatial deviations and temporal fluctuations of flow properties). The numerical technique employed for discretizing the governing equations is the control volume method Turbulent flow results for the macroscopic heat transef coefficient, between the fluid and solid phase in a, periodic cell, are presented. Copyright © 2006 by ASME.

Keywords

Heat transfer coefficient Porous media Turbulence modeling

Materials Science (all) (MATE) Condensed Matter Physics (PHYS) Mechanics of Materials (ENGI) Mechanical Engineering (ENGI)
: Scopus
Last Update: 2026-06-25
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