Effect of magnetic field on mixed convection and entropy generation of hybrid nanofluid in an inclined enclosure: Sensitivity analysis and optimization

被引:106
作者
Pordanjani, Ahmad Hajatzadeh [1 ]
Vahedi, Seyed Masoud [2 ,3 ]
Aghakhani, Saeed [4 ]
Afrand, Masoud [5 ,6 ]
Oztop, Hakan F. [7 ,8 ]
Abu-Hamdeh, Nidal [8 ]
机构
[1] Shahrekord Univ, Dept Mech Engn, Shahrekord, Iran
[2] Semnan Univ, Dept Mech Engn, Semnan, Iran
[3] RIPI, Gas Res Div, Gas Refining Technol Grp, Tehran, Iran
[4] Islamic Azad Univ, Dept Mech Engn, Najafabad Branch, Najafabad, Iran
[5] Ton Duc Thang Univ, Adv Inst Mat Sci, Lab Magnetism & Magnet Mat, Ho Chi Minh City, Vietnam
[6] Ton Duc Thang Univ, Fac Appl Sci, Ho Chi Minh City, Vietnam
[7] Firat Univ, Technol Fac, Dept Mech Engn, TR-23119 Elazig, Turkey
[8] King Abdulaziz Univ, Dept Mech Engn, Jeddah, Saudi Arabia
关键词
LATTICE BOLTZMANN SIMULATION; LID-DRIVEN CAVITY; HEAT-TRANSFER AUGMENTATION; NATURAL-CONVECTION; SQUARE CAVITY; THERMAL PERFORMANCE; FLOW; TEMPERATURE; ANNULUS; AL2O3/WATER;
D O I
10.1140/epjp/i2019-12763-2
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In this paper, a numerical study has been examined on the effect of the presence of a magnetic field on the rate of convective heat transfer and entropy generation of a hybrid nanofluid (water/Al2O3-CuO (50/50)) in a square diagonal cavity. The horizontal walls of the insulating cavity and fixed temperature source are set on the left and right vertical wall with cold temperature. The governing equations are solved by finite volume method using the SIMPLE algorithm. In this paper, the effect of the Richardson number, Hartman number, thermal source length on hybrid entropy generation and convective heat transfer rate has been examined. Using the Response Surface Methodology (RSM) method, a polynomial equation is obtained between the three parameters given for the Nusselt number, total entropy generation and Bejan number. Then the sensitivity of responses to factors is checked. Finally, depending on the importance of each of the responses, we use the optimal points where simultaneously the highest Nu number, the lowest entropy generation, and Bejan number occur. The results show that with increasing Richardson number, heat transfer rate is reduced, and this reduction is more pronounced in smaller Hartmann number. Also, total entropy generation increased with increasing Richardson number, but Bejan number reduced. With increasing the intensity of the magnetic field and reducing the length of the thermal source, the heat transfer rate also reduces. However, with increasing the intensity of the magnetic field, the total entropy generation and Bejan number increase. Also, with increasing the length of the thermal source, the total entropy generation and Bejan number increase.
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页数:20
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