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Relevance of Low-Rm MHD for Surface Viscosimetry of Liquid Metals

机译:低RM MHD对液体金属表面粘芯的相关性

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This paper presents a theoretical background which justifies the benefits of MHD using a magnetic field for surface viscosimetry of liquid/melted metals. The system considered is based on an annular shallow-channel layout filled with a melted metal covered by an oxide layer, and pervaded by a uniform static magnetic field. The latter permits to monitor the coupling between surface rheology and a supporting flow due to the well-known 2-D tendency of low-Rm magnetohydrodynamics. The impact of a non-planar interface and/or a non-uniformly oxidized interface can be investigated and the surface viscosity better identified.
机译:本文介绍了使用液体/熔融金属表面粘度测定法的磁场来证明MHD的益处。所考虑的系统基于填充有氧化物层覆盖的熔化金属的环形浅通道布局,并被均匀的静态磁场渗透。由于低RM磁流体动力学的众所周知的2-D趋势,后一种允许监测表面流变学和支撑流之间的耦合。可以研究非平面界面和/或非均匀氧化界面的影响,并更好地识别表面粘度。

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