首页> 外文期刊>International Journal of Heat and Fluid Flow >Numerical and experimental study of the traveling magnetic field effect on the horizontal solidification in a rectangular cavity part 1: Liquid metal flow under the TMF impact
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Numerical and experimental study of the traveling magnetic field effect on the horizontal solidification in a rectangular cavity part 1: Liquid metal flow under the TMF impact

机译:行磁场对矩形腔水平凝固的影响的数值和实验研究1:TMF冲击下液态金属的流动

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摘要

Traveling magnetic field is one of effective tools for controlling phase change processes in metals. A better understanding of electromagnetic impact in such applications can help to improve and simplify technological processes. In this paper, numerical and experimental study of the electromagnetic force generated by traveling magnetic field and its ability to control liquid gallium flow and, consequently, affect the characteristics of solidification and melting processes are evaluated. Three-dimensional numerical model for calculating the magnetic field distribution and electromagnetic force acting on liquid gallium in a laboratory-size rectangular cavity was analyzed. Specific values of the TMF impact were chosen for the cases of interest in order to use such impact in our further work with horizontal gallium solidification process. The traveling magnetic field inductor was designed and built for making appropriate measurements and validating calculations. The analysis was focused on the electromagnetic force and the obtained velocity field. The experimental setup included an ultrasonic Doppler velocimeter for noninvasive measurements of the velocities of liquid metal flow. The comparison of computations with the experiments has shown a good agreement.
机译:传播磁场是控制金属相变过程的有效工具之一。更好地了解此类应用中的电磁影响可以帮助改善和简化工艺流程。在本文中,对行进磁场产生的电磁力及其控制液体镓流动并因此影响凝固和熔化过程的特性的数值和实验研究进行了评估。分析了用于计算实验室大小矩形腔中作用于液态镓的磁场分布和电磁力的三维数值模型。针对感兴趣的情况选择了TMF影响的特定值,以便在我们的水平镓凝固工艺的进一步工作中使用这种影响。设计并制造了行进磁场感应器,以进行适当的测量和验证计算。分析集中在电磁力和获得的速度场上。实验装置包括超声多普勒测速仪,用于无创测量液态金属流动的速度。计算与实验的比较显示出很好的一致性。

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