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数值模拟研究了矩形槽内导电流体由于焦耳热作用和电磁力共同作用引起的流动换热现象.数值结果表明,在给定流体性质情况下,焦耳热作用引起对流为两涡,电磁力作用时获得四涡流动,随Ha数的增加,电磁力驱动对流作用增大,热、磁共同作用时,流场温度场与Ha2Pr/Ra大小有关,从而影响到对流换热的强弱,在临界Ha2Pr/Ra以下,焦耳热引起的对流为主,Ha数增加,减弱换热;在临界日Ha2Pr/Ra以上,电磁力驱动的对流为主,Ha数增加,换热强化.

参考文献

[1] Wang L B;Wakayama N I .Dependence of Aspect Ratio on Magnetic Damping of Natural Convection in Low-Conducting Aqueous Solution in Rectangular Cavity[J].International Journal of Heat and Fluid Flow,2002,23:92-95.
[2] Azusa Ujihara;Toshio Tagawa;Hiroyuki Ozoe .Average heat transfer rates measured in two different temperature ranges for magnetic convection of horizontal water layer heated from below[J].International Journal of Heat and Mass Transfer,2006(19/20):3555-3560.
[3] Yoo Cheol Won;Koichi Kakimoto;Hiroyuki Ozoe .Transient three-dimensional numerical computation for unsteady oxygen concentration in a silicon melt during a Czochralski process under a cusp-shaped magnetic field[J].Journal of Crystal Growth,2001(4):622-630.
[4] Shu-Shen Lu;Hiroyuki Ozoe .Application of multiple magnetic coils to drive the air flow in a long pipe[J].International Journal of Heat and Mass Transfer,2006(23/24):4536-4542.
[5] Lijun Yang;Jianxun Ren;Yaozu Song .Free convection of a gas induced by a magnetic quadrupole field[J].Journal of Magnetism and Magnetic Materials,2003(3):377-384.
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