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首页> 外文期刊>International Journal of Engineering Science >Stability of ferrofluid flow between concentric rotating cylinders with an axial magnetic field
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Stability of ferrofluid flow between concentric rotating cylinders with an axial magnetic field

机译:具有轴向磁场的同心旋转圆筒之间铁磁流体流动的稳定性

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摘要

A linear stability analysis for the ferrofluid flow between two concentric rotating cylinders in the presence of an axial magnetic field is implemented in this study. Both of the wide-gap and small-gap cases are considered and the governing equations with respect to three-dimensional disturbances including axi-symmetric and non-axisymmetric modes are derived and solved by a direct numerical procedure. A parametric study covering wide ranges of φ, the volume fraction of colloidal particles; ξ, the strength of axial magnetic field; μ, the ratio of angular velocity of the outer cylinder to that of the inner cylinder; and ε, the ratio of radius of the inner cylinder to that of the outer cylinder, is conducted. Results show that the stability characteristics depend heavily on these factors. It is found that the increases of φ and ξ, and decrease of a tend to stabilize the basic flow for an assigned value of μ. The variations of the onset mode with these parameters are discussed in detail. An example for the practical application of present results is given to help the understanding of stability behaviour of this flow.
机译:在这项研究中,对存在轴向磁场的两个同心旋转圆柱体之间的铁磁流体流动进行了线性稳定性分析。同时考虑了宽间隙和小间隙情况,并通过直接数值程序推导并求解了关于包括轴对称和非轴对称模式在内的三维扰动的控制方程。参数研究涵盖了宽范围的φ(胶体颗粒的体积分数); ξ,轴向磁场强度; μ,外筒与内筒的角速度之比; ε是内筒半径与外筒半径之比。结果表明,稳定性特征在很大程度上取决于这些因素。发现对于给定的μ值,φ和ξ的增加以及趋势的减小趋于稳定基本流量。详细讨论了启动模式随这些参数的变化。给出了一个实际应用本结果的例子,以帮助理解这种流动的稳定性。

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