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Onset of Benard-Marangoni ferroconvection with a convective surface boundary condition: The effects of cubic temperature profile and MFD viscosity

机译:具有对流表面边界条件的Benard-marangoni钢筋混合反应的发生:立方温度分布和mFD粘度的影响

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摘要

The combined effects of basic cubic temperature profiles and magnetic field dependent (MFD) viscosity on the onset of Benard-Marangoni convection in a ferrofluid layer are studied. The lower boundary is rigid-isothermal, while the upper free boundary open to the atmosphere is flat and subject to a general thermal boundary condition. The Galerkin technique is employed to extract the critical stability parameters numerically. The results indicate that the basic cubic temperature profiles have a profound influence on the stability characteristics of the system and can be effectively used to either suppress or augment the onset of Benard-Marangoni ferroconvection. Besides, increasing the magnetic Rayleigh number and the nonlinearity of magnetization hastens, while an increase in the Biot number and MFD viscosity parameter delays the onset of Benard-Marangoni ferroconvection. The existing results in the literature are obtained as particular cases from the present study. (C) 2013 Elsevier Ltd. All rights reserved.
机译:研究了基本立方温度曲线和磁场依赖性(MFD)粘度对铁磁流体层中Benard-Marangoni对流开始的综合影响。下边界是刚性等温的,而通向大气的上自由边界是平坦的,并且受一般热边界条件的影响。采用Galerkin技术以数值方式提取临界稳定性参数。结果表明,基本的三次温度曲线对系统的稳定性有很大的影响,可以有效地用于抑制或增加Benard-Marangoni铁对流的发生。此外,增加磁瑞利数和磁化非线性会加快,同时增加比奥数和MFD粘度参数会延迟Benard-Marangoni铁对流的发生。文献中的现有结果是根据本研究的特殊情况获得的。 (C)2013 Elsevier Ltd.保留所有权利。

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