Effect of a Magnetic Quadrupole Field on Entropy Generation in Thermomagnetic Convection of Paramagnetic Fluid with and without a Gravitational Field

被引:6
作者
Shi, Er [1 ,2 ]
Sun, Xiaoqin [1 ,2 ]
He, Yecong [1 ,2 ]
Jiang, Changwei [1 ,2 ]
机构
[1] Changsha Univ Sci & Technol, Sch Energy & Power Engn, Changsha 410114, Hunan, Peoples R China
[2] Key Lab Renewable Energy Eletr Technol Hunan Prov, Changsha 410114, Hunan, Peoples R China
来源
ENTROPY | 2017年 / 19卷 / 03期
基金
中国国家自然科学基金;
关键词
entropy generation; thermomagnetic convection; heat transfer; numerical simulation; magnetic quadrupole field; NATURAL-CONVECTION; NUMERICAL COMPUTATION; HEAT-TRANSFER; AIR; CAVITY; NANOFLUID; FLOW; ENCLOSURE;
D O I
10.3390/e19030096
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Entropy generation for a paramagnetic fluid in a square enclosure with thermomagnetic convection is numerically investigated under the influence of a magnetic quadrupole field. The magnetic field is calculated using the scalar magnetic potential approach. The finite-volume method is applied to solve the coupled equation for flow, energy, and entropy generation. Simulations are conducted to obtain streamlines, isotherms, Nusselt numbers, entropy generation, and the Bejan number for various magnetic forces (1 <= gamma <= 100) and Rayleigh numbers (10(4) <= Ra <= 10(6)). In the absence of gravity, the total entropy generation increases with the increasing magnetic field number, but the average Bejan number decreases. In the gravitational field, the total entropy generation respects the insensitive trend to the change of the magnetic force for low Rayleigh numbers, while it changes significantly for high Rayleigh numbers. When the magnetic field enhances, the share of viscous dissipation in energy losses keeps growing.
引用
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页数:18
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