Title of article
Numerical validation of experimental heat transfer coefficient with SiO2 nanofluid flowing in a tube with twisted tape inserts
Author/Authors
Azmi، نويسنده , , W.H. and Sharma، نويسنده , , K.V. Rameshwar Sarma، نويسنده , , P.K. and Mamat، نويسنده , , Rizalman and Anuar، نويسنده , , Shahrani and Syam Sundar، نويسنده , , L.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
11
From page
296
To page
306
Abstract
A numerical model has been developed for turbulent flow of nanofluids in a tube with twisted tape inserts. The model is based on the assumption that van Driest eddy diffusivity equation can be applied by considering the coefficient and the Prandtl index in momentum and heat respectively as a variable. The results from the numerical analysis are compared with experiments undertaken with SiO2/water nanofluid for a wide range of Reynolds number, Re. Generalized equation for the estimation of nanofluid friction factor and Nusselt number is proposed with the experimental data for twisted tapes. The coefficient and the Prandtl index in the eddy diffusivity equation of momentum and heat is obtained from the numerical values as a function of Reynolds number, concentration and twist ratio. An enhancement of 94.1% in heat transfer coefficient and 160% higher friction factor at Re = 19,046 is observed at a twist ratio of five with 3.0% volumetric concentration when compared to flow of water in a tube. A good agreement with the limited experimental data of other investigators is observed with Al2O3 and Fe3O4 nanofluids indicating the validity of the numerical model for use with twisted tape inserts.
Keywords
twisted tape , Numerical model , Heat transfer coefficient , van Driest eddy diffusivity equation , SiO2 nanofluid , Friction factor
Journal title
Applied Thermal Engineering
Serial Year
2014
Journal title
Applied Thermal Engineering
Record number
1908348
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