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Flow characteristics of gallium in a meso-scale channel under the influence of magnetic fields

机译:磁场作用下中尺度沟道中镓的流动特性

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摘要

Flow characteristics of the liquid metal (gallium) in a meso-scale channel under the influence of a magnetic field, are investigated numerically. Low Reynolds number flow is considered. Runs with a magnetic field that has different orientations relative to the main flow direction in the channel are conducted. The impact of the induced Lorentz force acting on the flow field is quantified. The channel in which the flow takes place has a maximum width of 2 mm and a total length of 8 mm. The study represents a precursor for future investigations that target enhancing heat transfer performance in small scale channels, that might be of importance for example in electronic cooling applications. The results show that different magnetic field orientations lead to significant changes in the flow field. The results also highlight the need for further such investigations to explore further the effect of the applied magnetic fields under different flow rates, different channel geometry, and different channel size conditions.
机译:数值研究了在磁场作用下中尺度通道中液态金属(镓)的流动特性。低雷诺数流被考虑。进行的磁场运行相对于通道中的主流方向具有不同的方向。量化了感应的洛伦兹力对流场的影响。发生流动的通道的最大宽度为2 mm,总长度为8 mm。该研究代表了未来研究的先驱,其目标是增强小规模通道中的传热性能,这在电子冷却应用中可能很重要。结果表明,不同的磁场方向会导致流场发生显着变化。结果还突出显示了需要进行进一步的研究,以进一步探索在不同流速,不同通道几何形状和不同通道尺寸条件下施加的磁场的影响。

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