Forced convection in a double tube heat exchanger using nanofluids with constant and variable thermophysical properties

Author:

Bahmani Mohammad Hussein,Akbari Omid Ali,Zarringhalam Majid,Ahmadi Sheikh Shabani Gholamreza,Goodarzi Marjan

Abstract

Purpose This paper aims to study forced convection in a double tube heat exchanger using nanofluids with constant and variable thermophysical properties. Design/methodology/approach The cold fluid was distilled water flowing in the annulus and the hot fluid was aluminum oxide/water nanofluid which flows in the inner tube. Thermal conductivity and viscosity were taken as variable thermophysical properties, and the results were compared against runs with constant values. Finite volume method was used for solving the governing equations. For distilled water, Re = 500 was used, while for nanofluid, nanoparticles volume fraction equal to 2.5-10 per cent and Re = 100-1,500 were used. Findings Heat transfer rate can be enhanced by increasing the volume fraction of nanoparticles and Reynolds number. Thermal efficiency is better with constant thermophysical characteristics and the average Nusselt number is better for variable characteristics. Originality/value Heat exchanger efficiency is evaluated by using distilled water and nanofluid bulk temperature, thermal efficiency and average and local Nusselt numbers for both variable and constant thermophysical characteristics.

Publisher

Emerald

Subject

Applied Mathematics,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference36 articles.

1. Experimental investigation of diameter effect on heat transfer performance and pressure drop of TiO2–water nanofluid;Experimental Thermal and Fluid Science,2013

2. Effect of nanofluid variable properties on natural convection in enclosures;International Journal of Thermal Sciences,2010

3. Fully developed mixed convection in horizontal and inclined tubes with uniform heat flux using nanofluids;International Journal of Heat and Fluid Flow,2008

4. Impact of ribs on flow parameters and laminar heat transfer of water–aluminum oxide nanofluid with different nanoparticle volume fractions in a three-dimensional rectangular microchannel;Advances in Mechanical Engineering,2015

5. Investigation of rib's height effect on heat transfer and flow parameters of laminar Water-Al2O3 nanofluid in a two dimensional Rib-Microchannel;Applied Mathematics and Computation,2016

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