为了更好地了解轴向磁场对温度梯度作用下Marangoni-热毛细对流的影响,采用有限差分法对环形浅液池内硅熔体制单晶的流动进行了数值模拟.研究了三种不同边界条件下,Ha数分别为0、10、20、30对应下硅熔体内部流动强度和自由表面速度.结果表明,轴向磁场对浅液池内的Marangoni对流、热毛细对流和耦合的Marangoni-热毛细对流都有较好的抑制作用,且随着磁场强度的增强,抑制作用增加,更有利于提高晶体的结晶质量.当磁场强度和底部热流密度一定时,随着水平温度梯度的增加,靠近内壁的流动得到增强,外壁附近流动反而减弱.
参考文献
[1] | 周炳红;刘秋生;胡良;姚永龙;胡文瑞.两层流体热毛细对流空间实验研究[J].中国科学E辑,2002(3):316-322. |
[2] | Rachid Es Sakhy;Kamal El Omari;Yves Le Guer;Serge Blancher.Rayleigh-Benard-Marangoni convection in an open cylindrical container heated by a non-uniform flux[J].International Journal of Thermal Sciences,2014:198-209. |
[3] | You-Rong Li;Nobuyuki Imaishi;Takeshi Azami;Taketoshi Hibiya.Three-dimensional oscillatory flow in a thin annular pool of silicon melt[J].Journal of Crystal Growth,20041/2(1/2):28-42. |
[4] | D. Schwabe;S. Benz.Thermocapillary flow instabilities in an annulus under microgravity -results of the experiment magia[J].Advances in Space Research: The Official Journal of the Committee on Space Research(COSPAR),20024(4):629-638. |
[5] | Fei Wang;Lan Peng;QuanZhuang Zhang.Three-dimensional flow in a thin annular layer of silicon melt with bidirectional temperature gradients[J].Crystal Research and Technology: Journal of Experimental and Industrial Crystallography,201410(10):829-835. |
[6] | 张发云;罗玉峰;李云明;王发辉;胡云;彭华厦.磁场应用在硅晶体生长过程中的研究进展[J].材料导报,2013(13):15-19. |
[7] | M. Sankar;M. Venkatachalappa;I.S. Shivakumara.Effect of magnetic field on natural convection in a vertical cylindrical annulus[J].International journal of engineering science,200620(20):1556-1570. |
[8] | Y. Takagi;Y. Okano;H. Minakuchi;S. Dost.Combined effect of crucible rotation and magnetic field on hydrothermal wave[J].Journal of Crystal Growth,2014Jan.1(Jan.1):72-76. |
[9] | 李炜;姜燕妮;颜君毅;陈启生.磁场对双扩散液层热毛细对流的影响[J].力学学报,2012(3):481-486. |
[10] | 彭岚;孟海泳;李友荣;张伟.轴向磁场对分离结晶熔体中热毛细对流的影响[J].工程热物理学报,2011(5):737-740. |
[11] | 彭岚;龚欢.静态磁场对分离结晶中熔体流动的影响[J].中国有色金属学报(英文版),2015(3):936-943. |
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