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首页> 外文期刊>Journal of magnetism and magnetic materials >Numerical approach and experimental verification for interface shape determination between layered fluids subject to a magnetic field
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Numerical approach and experimental verification for interface shape determination between layered fluids subject to a magnetic field

机译:磁场作用下层状流体间界面形状确定的数值方法和实验验证

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摘要

Various applications of magnetic fluids involve interface phenomena. The analysis of the hydrostatic interface shape between two immiscible liquid layers, especially under magnetic field influence, is the first step to understand the accompanying complex dynamic phenomena as well as to providing reliable numerical capabilities for their accurate prediction. This study presents a relatively simple numerical approach, and the accompanying theory, to reliably define the meniscus shape in a two-layered fluid system in presence of a horizontal magnetic field with a vertical gradient. In the course of the study, two dimensionless parameters have been derived to describe the magnetic pressure jump at the interface and the magnetic body force throughout the volume. These parameters are used to interpret the results of the analysis and to show that a horizontal magnetic field tends to flatten the meniscus shape at the interface despite of the direction of its vertical gradient.
机译:磁性流体的各种应用都涉及界面现象。分析两个不可混溶的液体层之间的流体静力学界面形状,尤其是在磁场影响下,是了解伴随的复杂动态现象以及为其准确预测提供可靠数值能力的第一步。这项研究提出了一种相对简单的数值方法以及相关的理论,以在存在具有垂直梯度的水平磁场的情况下可靠地定义两层流体系统中的弯月面形状。在研究过程中,导出了两个无因次参数来描述界面处的磁压力跳跃和整个体积中的磁力。这些参数用于解释分析结果,并显示水平磁场倾向于使界面处的弯月面形状变平,尽管其垂直梯度的方向也是如此。

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