Heat transfer and entropy generation of water/TiO2 nanofluid flow in a wavy channel using two-phase mixture approach

被引:7
|
作者
Boudraa, B. [1 ]
Bessaih, R. [1 ]
机构
[1] Univ Mentouri Bros Constantine 1, Constantine 1, Algeria
关键词
mixture model; wavy wall; laminar; forced convection; THERMAL-HYDRAULIC PERFORMANCE; TURBULENT FORCED-CONVECTION; TRANSFER ENHANCEMENT; CORRUGATED CHANNEL; PRESSURE-DROP; AL2O3-WATER NANOFLUID; MIXED CONVECTION; MAGNETIC-FIELD; PHASE-SHIFT; TUBE;
D O I
10.1134/S0869864322040114
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In the current study, we conducted a numerical analysis of water-TiO2 nanofluid and entropy generation in a wavy channel under constant heat flow (q '') by using a two-phase mixture model. The analyses were carried under a laminar forced convection flow condition. Reynolds numbers (Re) are considered in the range of 50 <= Re <= 600 with the volume fraction of nanoparticles (phi) considered in the range of 1 % <= phi <= 5 %. The governing equations are solved by using ANSYS-Fluent software 14.5. The validation of the outcomes has demonstrated a strong consensus between the results and the literature data. The effect of various Re, phi and wavy wall amplitudes (alpha) on the flow behavior and heat transfer are examined. Moreover, the distribution of the static temperature, streamlines, total entropy generation (((S)OVER DOT)(g,t)), and Bejan number (Be) contours have been presented and discussed. Results showed that the heat transfer rate improves when phi, Re, and alpha increase. The heat transfer is enhanced when using a wavy wall compared to a straight wall. The performance evaluation criterion (PEC) increases with phi and Re. Therefore, it is recommended to use large values for each of phi and Re in the wavy channel from engineering and economics perspectives. Concerning ((S)OVER DOT)(g,t,h) and Be, we conclude that these parameters decrease when phi and Re increase, except ((S)OVER DOT)(g,t) is increased with phi and Re.
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页码:587 / 604
页数:18
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