Modification of fluid flow and heat transport in vertical Bridgman configurations by rotating magnetic fields

被引:50
作者
Dold, P
Benz, KW
机构
[1] Kristallographisches Institut, Albert-Ludwigs-Universität, Hebelstraße 25
关键词
D O I
10.1002/crat.2170320105
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
Applying a rotating magnetic field to an electrically conducting liquid, a Lorentz force is induced which generates a melt rotation of a certain angular velocity. A cylindrical gallium melt (aspect ratio 2.5) has been used as a model liquid. The melt has been heated from the bottom (Ra=10(6)) or from the top (Ra=-10(6)) and the resulting temperature fluctuations in the melt have been measured in dependence on the rotating field strength (B-max=30 mT). In the case of the unstable gradient 0.8 mT are sufficient to dominate the buoyancy driven convection and to reduce the amplitude of the buoyancy caused temperature oscillations for more than one order of magnitude. At the same time. the fluctuation frequency increases with the field strength. In the case of the stabilizing temperature gradient: low amplitude/high frequency temperature fluctuations are generated by the rotating magnetic field, indicating the transition to a time-dependent flow. In both cases we see an increase of the convective heat transport for magnetic inductions higher than approximately 5 mT. Applying the rotating magnetic field to the Bridgman growth of gallium doped germanium, the same behavior can be seen: Growing with a top-seeded arrangement, the intensity of the dopant striations is decreased and their frequency is increased. Growing with a bottom-seeded arrangement, the interface curvature changes from concave to convex and the flow becomes time-dependent.
引用
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页码:51 / 60
页数:10
相关论文
共 16 条
[1]  
[Anonymous], INT J ELECT
[2]   SINGLE-CRYSTAL GROWTH WITH THE CZOCHRALSKI METHOD INVOLVING ROTATIONAL ELECTROMAGNETIC STIRRING OF THE MELT [J].
BRUCKNER, FU ;
SCHWERDTFEGER, K .
JOURNAL OF CRYSTAL GROWTH, 1994, 139 (3-4) :351-356
[3]   Convective temperature fluctuations in liquid gallium in dependence on static and rotating magnetic fields [J].
Dold, P ;
Benz, KW .
CRYSTAL RESEARCH AND TECHNOLOGY, 1995, 30 (08) :1135-1145
[4]  
GELFGAT Y, 1994, 45 C INT ASTR FED JE
[5]  
GELFGAT YM, 1991, P 1 INT S HYDR HEAT, P429
[6]  
Hurle D.T.J., 1993, Crystal pulling from the melt
[7]  
HURLE DTJ, 1994, HDB CRYSTAL GROWTH, P259
[8]   CRYSTAL-GROWTH FROM MELT UNDER DESTABILIZING THERMAL GRADIENTS [J].
KIM, KM ;
WITT, AF ;
GATOS, HC .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1972, 119 (09) :1218-&
[9]   QUANTITATIVE-ANALYSIS OF EFFECTS OF DESTABILIZING VERTICAL THERMAL GRADIENTS ON CRYSTAL-GROWTH AND SEGREGATION - GA-DOPED GE [J].
KIM, KM ;
WITT, AF ;
LICHTENSTEIGER, M ;
GATOS, HC .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1978, 125 (03) :475-480
[10]   EXPERIMENTAL INVESTIGATION OF A MAGNETICALLY DRIVEN ROTATING LIQUID-METAL FLOW [J].
ROBINSON, T ;
LARSSON, K .
JOURNAL OF FLUID MECHANICS, 1973, 60 (OCT) :641-664