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Multiscale Computational Fluid Dynamics Methodology for Predicting Thermal Performance of Compact Heat Exchangers

Authors :
Matteo Fasano
A. Ciuffini
Eliodoro Chiavazzo
Alessandro Scattina
M. Roberti
Pietro Asinari
G. Toscano Rivalta
F. Carena
Source :
Journal of Heat Transfer. 138
Publication Year :
2016
Publisher :
ASME International, 2016.

Abstract

Computational fluid dynamics (CFD) is a powerful tool for analyzing the performance of heat exchangers. However, such an approach may be often limited by unaffordable computational time. In this paper, a multiscale CFD capable of accurately and efficiently prediction of the heat transfer of compact heat exchangers is presented. This methodology is based on a small-scale CFD analysis of a single tube and a small element of the compact heat exchanger, and it is able to predict the thermal performance of an entire heat exchanger in a wide range of inlet conditions, with a reduced computational time. The proposed up-scaling procedure makes use of specific approximations and correlations derived from the CFD model and literature, in order to consider the typical phenomena occurring in compact heat exchangers under laminar flow conditions. Results demonstrate an excellent accuracy when compared to experimental data (discrepancies

Details

ISSN :
15288943 and 00221481
Volume :
138
Database :
OpenAIRE
Journal :
Journal of Heat Transfer
Accession number :
edsair.doi.dedup.....9cd1b1bb51299e6995b88b398251beb5
Full Text :
https://doi.org/10.1115/1.4032980