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Spatially resolved measurements in a liquid metal flow with Lorentz force velocimetry

机译:用洛伦兹力测速法在液态金属流中进行空间分辨测量

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摘要

Velocity measurements inside metal melt flows are important for many laboratory and industrial applications in metallurgy but remain experimentally challenging. Only few techniques are viable for the measurement of mean flow velocities inside hot and aggressive materials. One of them is the previously studied electromagnetic contact-free Lorentz force velocimetry. However, the desire to resolve velocities spatially has not been satisfied so far. In the work presented here, spatial resolution is reached with a Lorentz force flow meter (LFF) by implementing a permanent magnet whose dimensions are significantly smaller than that of the flow under investigation. It is shown on a straight square duct flow that such a flow meter is capable of distinguishing obstacles in the flow and the resulting modified flow structures. The spatial resolution of the LFF is demonstrated to be at least on the order of 3 cm with a 1 cm magnet cube.
机译:金属熔体内部流速的测量对于冶金中的许多实验室和工业应用都很重要,但在实验上仍然具有挑战性。只有很少的技术可用于测量高温和腐蚀性材料内部的平均流速。其中之一是先前研究的电磁无接触洛伦兹力测速法。然而,到目前为止,尚未满足在空间上解析速度的愿望。在此处介绍的工作中,通过安装尺寸明显小于所研究流量的永磁体,利用洛伦兹力流量计(LFF)达到了空间分辨率。在笔直的方形管道流中显示,这种流量计能够区分流中的障碍物以及由此产生的改进的流结构。事实证明,LFF的空间分辨率至少为1 cm的磁性立方体大约3 cm。

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