Published February 2019 | Version v1
Journal article

Experimental study on enhancement of free convective heat transfer in a tilted hemispherical enclosure by using Water-ZnO nanofluid saturated porous materials

  • 1. Université de Paris, Laboratoire Thermique Interfaces Environnement (LTIE), EA 4415, Département GTE, 50, Rue de Sèvres, F-92410 Ville d'Avray (France)

Description

Highlights: • ZnO-H2O nanofluid saturated porous medium is used for electronics thermoregulation. • The study optimize the thermal design of the electronic assembly. • Small deviations are observed between measurements and numerical results. • Thermal measurements validate the implemented mathematical model of a numerical study. -- Abstract: Porous materials saturated with Water-ZnO nanofluid are used for convective heat transfer enhancement purposes in a tilted hemispherical enclosure which cupola is maintained isothermally while its disc is an active electronic assembly generating high heat flux. An experimental installation has been designed to measure average Nusselt number for many combinations obtained by varying different physical parameters such as nanofluid volume fraction, power generated by the disc, thermal conductivity of porous medium and disc's inclination relative to the gravity field. Results clearly confirm that the nanofluid saturated porous medium enhances natural convective heat transfer for given combinations of the four influencing parameters. Small deviations observed between measurements and numerical results obtained in a recent numerical study validate the implemented mathematical model. Both numerical and experimental results allow optimization of the assembly's thermal sizing.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.applthermaleng.2018.11.115

Additional details

Identifiers

DOI
10.1016/j.applthermaleng.2018.11.115;
PII
S1359431118360630;

Publishing Information

Journal Title
Applied Thermal Engineering
Journal Volume
148
Journal Page Range
p. 992-998
ISSN
1359-4311
CODEN
ATENFT

Optional Information

Copyright
Copyright (c) 2018 Elsevier Ltd. All rights reserved.