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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Marangoni convection in a hemispheric molten silicon droplet and its control by an applied magnetic field
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Marangoni convection in a hemispheric molten silicon droplet and its control by an applied magnetic field

机译:半球形熔融硅滴中的Marangoni对流及其受外加磁场的控制

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摘要

A numerical simulation study was conducted for the "sessile drop method" that is one of the essential tools for conducting measurements of physical properties in droplets. The effect of the Marangoni convection on the maximum flow velocity in a hemispheric molten silicon droplet was examined. Simulation results show that the application of a vertical magnetic field can suppress the flow in the droplet near the plate, and consequently prevent the movement of the drop, and give rise to a diffusion-limited-condition near the plate where accurate measurements of the physical properties of a melt can be made.
机译:对“固滴法”进行了数值模拟研究,“固滴法”是进行液滴物理性质测量的重要工具之一。检查了Marangoni对流对半球形熔融硅液滴中最大流速的影响。仿真结果表明,垂直磁场的施加可以抑制液滴在板附近的流动,从而防止液滴运动,并在板附近产生扩散受限条件,从而可以精确地测量物理量。可以制造熔体的性质。

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