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首页> 外文期刊>Journal of Crystal Growth >Suppression of thermocapillary oscillations in sodium nitrate floating half-zones by high-frequency end-wall vibrations
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Suppression of thermocapillary oscillations in sodium nitrate floating half-zones by high-frequency end-wall vibrations

机译:高频端壁振动抑制硝酸钠漂浮半区中的热毛细管振荡

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摘要

Experiments to suppress thermocapillary oscillations by using high-frequency end-wall vibrations were carried out in sodium nitrate floating half-zones. Such a half-zone is formed by melting one end of a vertically held sodium nitrate crystal rod in contact with a hot surface at the top. Thermocapillary convection occurs in the melt due to the imposed temperature gradient at the free surface. When this temperature gradient is large enough, steady thermocapillary convection becomes unstable, and thermocapillary oscillations occur. In such a context, the bottom end of the crystal rod was vibrated at a high frequency to generate a streaming flow in a direction opposite to that of thermocapillary convection. It is observed that by generating a sufficiently strong streaming flow, the thermocapillary oscillations can be quenched everywhere in the melt zone.
机译:在硝酸钠漂浮的半区中进行了通过使用高频端壁振动抑制热毛细管振荡的实验。通过熔化竖直保持的硝酸钠晶体棒的一端与顶部的热表面接触而形成这样的半区。由于在自由表面处施加了温度梯度,熔体中发生了热毛细对流。当该温度梯度足够大时,稳定的热毛细管对流变得不稳定,并发生热毛细管振荡。在这种情况下,晶体棒的底端以高频率振动,以产生与热毛细管对流相反方向的流动。观察到,通过产生足够强的流动,热毛细管振荡可以在熔融区的任何地方被淬灭。

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