Published 2011
| Version v1
Publication
Enhancement of heat transfer and entropy generation analysis of nanofluids turbulent convection flow in square section tubes
Creators
Contributors
Description
In this article, developing turbulent forced convection flow of a water-Al2O3 nanofluid in a square tube, subjected
to constant and uniform wall heat flux, is numerically investigated. The mixture model is employed to simulate the
nanofluid flow and the investigation is accomplished for particles size equal to 38 nm.
An entropy generation analysis is also proposed in order to find the optimal working condition for the given
geometry under given boundary conditions. A simple analytical procedure is proposed to evaluate the entropy
generation and its results are compared with the numerical calculations, showing a very good agreement.
A comparison of the resulting Nusselt numbers with experimental correlations available in literature is
accomplished. To minimize entropy generation, the optimal Reynolds number is determined.
Additional details
Identifiers
- URL
- http://hdl.handle.net/11567/497318
- URN
- urn:oai:iris.unige.it:11567/497318
Origin repository
- Origin repository
- UNIGE