MHD Flow around Circular Cylinder UnderControl through three Different magnetic Permeability Status

M. Aissa, A. Alemany, A. Bouabdallah, A. Boutelhig
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Abstract

Through the current work, the flow around an insulating cylinder of various magnetic permeability, submitted to a flow of an incompressible electrically conducting fluid has been investigated. The homogeneous fluid flow and the homogeneous applied magnetic field are aligned at infinity. When the cylinder has the similar magnetic permeability as the fluid, the applied field is not influenced by the cylinder. However, when the cylinder has a different magnetic permeability than that of the fluid, the applied field is agitated by the cylinder and then the flow structures will become different from those of the previous case. Consequently, two cases can be distinguished following the last state whereas the cylinder magnetic permeability may have less or greater value than the fluid one’s. The best agreed results that have been obtained following the comparison to the literature magnetic field behaviors were selected .The event has been occurred, where the convergence and divergence of the magnetic stream lines were realized to the previous both cases of magnetic permeability situations, respectively. In fact, an important influence of magnetic field on the fluid has been occurred. Consequently, it can be concluded that the fluid has significant influences on the cylinder structure, through the impact of the fluid structure phenomenon, the shedding vortex process and its suppression. Accordingly, good results of drag aerodynamic coefficient evolution were obtained at the fixed value of the Reynolds number Re=550, for different Stuart numbers, greater than and lessen than a critical value adopting at N=0.8.
三种不同磁导率状态下MHD绕圆柱体流动的控制
通过目前的工作,研究了不同磁导率的绝缘圆柱体在不可压缩导电流体作用下的流动。均匀的流体流动和均匀的外加磁场在无穷远处排列。当筒体的磁导率与流体相似时,施加的磁场不受筒体的影响。然而,当筒体的磁导率与流体的磁导率不同时,施加的磁场受到筒体的搅动,流动结构就会与前一种情况不同。因此,在最后一种状态之后可以区分两种情况,而圆柱体磁导率可能具有比流体磁导率更小或更大的值。选取了与文献中磁场行为比较一致的结果,发生了磁流线与前两种磁导率情况分别收敛和发散的事件。事实上,磁场对流体的重要影响已经发生。因此,通过流体结构现象、脱落涡过程及其抑制的影响,可以得出流体对气缸结构有显著影响的结论。因此,在雷诺数Re=550的固定值下,对于不同的斯图尔特数,阻力气动系数的演化得到了较好的结果,该值大于或小于N=0.8时采用的临界值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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