Effect of the electric conductivity and Seebeck coefficient of the rods on the oscillatory Marangoni convection in the presence of a uniform axial magnetic field

Author:

KITAYAMA Tomohiro1,TAGAWA Toshio1

Affiliation:

1. Department of Aerospace Engineering, Tokyo Metropolitan University

Publisher

Japan Society of Mechanical Engineers

Reference17 articles.

1. Cröll, A., Szofran, F.R., Dold, P., Benz, K.W. and Lehoczky, S.L., Floating-zone growth of silicon in magnetic fields II. Strong static axial fields, Journal of Crystal Growth, Vol. 183 (1998), pp. 554-563.

2. Hayashida, H., Matsumoto, S., Natsui, H., Yoda, S. and Imaishi, N., Experimental study on transition to oscillatory thermocapillary flow in the half-zone liquid bridge of low Prandtl number fluid, International Journal Microgravity Science and Application, Vol. 21, No. 4 (2004), pp. 281-284 (in Japanese).

3. Hirano, H., Numerical analysis of fluid flow and visualization (3rd edition), Maruzen (2011) (in Japanese).

4. Hu, W. R. and Tang, Z. M., Floating zone convection in crystal growth modeling, Science Press (2003).

5. Imaishi, N., Yasuhiro, S., Akiyama, Y. and Yoda, S., Numerical simulation of oscillatory Marangoni flow in half-zone liquid bridge of low Prandtl number fluid, Journal of Crystal Growth, Vol. 230 (2001), pp. 164-171.

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