Influence of T-semi attached rib on turbulent flow and heat transfer parameters of a silver-water nanofluid with different volume fractions in a three-dimensional trapezoidal microchannel

被引:177
作者
Alipour, Habibollah [1 ]
Karimipour, Arash [2 ]
Safaei, Mohammad Reza [3 ]
Semiromi, Davood Toghraie [4 ]
Akbari, Omid Ali [1 ]
机构
[1] Islamic Azad Univ, Young Researchers & Elite Club, Khomeinishahr Branch, Khomeinishahr, Iran
[2] Islamic Azad Univ, Dept Mech Engn, Najafabad Branch, Najafabad, Iran
[3] Islamic Azad Univ, Young Researchers & Elite Club, Mashhad Branch, Mashhad, Iran
[4] Islamic Azad Univ, Dept Mech Engn, Khomeinishahr Branch, Khomeinishahr, Iran
关键词
Nanofluid; Ribbed microchannel; Nusselt number; Local friction factor; SHAPED REENTRANT CAVITIES; MIXED CONVECTION; TRANSFER ENHANCEMENT; ENTROPY GENERATION; NANOPARTICLE MIGRATION; AL2O3-WATER NANOFLUID; THERMAL-CONDUCTIVITY; RECTANGULAR CHANNELS; FORCED-CONVECTION; MAGNETIC-FIELD;
D O I
10.1016/j.physe.2016.11.021
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
This study aimed at exploring influence of T-semi attached rib on the turbulent flow and heat transfer parameters of a silver-water nanofluid with different volume fractions in a three-dimensional trapezoidal microchannel. For this purpose, convection heat transfer of the silver-water nanofluid in a ribbed microchannel was numerically studied under a constant heat flux on upper and lower walls as well as isolated side walls. Calculations were done for a range of Reynolds numbers between 10,000 and 16,000, and in four different sorts of serrations with proportion of rib width to hole of serration width (R/W). The results of this research are presented as the coefficient of friction, Nusselt number, heat transfer coefficient and thermal efficiency, four different R/W microchannels. The results of numerical modeling showed that the fluid's convection heat transfer coefficient is increased as the Reynolds number and volume fraction of solid nanoparticle are increased. For R/W=0.5, it was also maximum for all the volume fractions of nanoparticle and different Reynolds numbers in comparison to other similar R/W situations. That's while friction coefficient, pressure drop and pumping power is maximum for serration with R/W=0 compared to other serration ratios which lead to decreased fluid heat transfer performance.
引用
收藏
页码:60 / 76
页数:17
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