Magneto-Rotatory Convection in Couple-Stress Fluid

Pardeep Kumar
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Abstract

Background: Thermal convection is the most convective instability when crystals are produced from a single element like silicon and the thermal instability of a fluid layer heated from below plays an important role in geophysics, oceanography, atmospheric physics, etc. The flow through porous media is of considerable interest for petroleum engineers, for geophysical fluid dynamicists and has importance in chemical technology and industry. Many of the flow problems in fluids with couple-stresses indicate some possible experiments, that could be used for determining the material constants, and the results are found to differ from those of Newtonian fluid. Keeping this in view, the present work was to study the effect of a uniform vertical magnetic field on the couple-stress fluid heated from below in the presence of a uniform vertical rotation through permeable media. Methodology: The present problem is studied using the linearized stability theory, Boussinesq approximation, normal mode analysis, and the dispersion relation is obtained. Results: The stationary convection, stability of the system, and oscillatory modes are discussed. In the case of stationary convection, the rotation postpones the onset of convection. The magnetic field and couple-stress may hasten the onset of convection in the presence of rotation while in the absence of rotation; they always postpone the onset of convection. The medium permeability hastens the onset of convection in the absence of rotation while in the presence of rotation, it may postpone the onset of convection. The rotation and magnetic field are found to introduce oscillatory modes in the system which was non-existent in their absence. A sufficient condition for the non-existence of overstability is also obtained.
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耦合应力流体中的磁旋转对流
背景:热对流是由硅等单一元素产生晶体时最不稳定的对流,从下加热的流体层的热不稳定性在地球物理学、海洋学、大气物理学等领域起着重要作用。通过多孔介质的流动是石油工程师、地球物理流体动力学家非常感兴趣的问题,在化学技术和工业中也具有重要意义。许多具有耦合应力的流体的流动问题表明了一些可能的实验,可用于确定材料常数,并且发现结果与牛顿流体的结果不同。考虑到这一点,目前的工作是研究均匀垂直磁场对从下面加热的耦合应力流体在均匀垂直旋转的情况下通过可渗透介质的影响。方法:利用线性化稳定性理论、Boussinesq近似、正态分析等方法对该问题进行研究,得到色散关系。结果:讨论了稳态对流、系统稳定性和振荡模态。在静止对流的情况下,旋转推迟了对流的开始。磁场和耦合应力在有旋转时加速对流的发生,而在无旋转时加速对流的发生;它们总是推迟对流的发生。介质渗透性在无旋转时加速对流的发生,而在有旋转时则可能推迟对流的发生。发现旋转和磁场在系统中引入了振荡模式,而在它们不存在的情况下,振荡模式是不存在的。并给出了不存在过稳定性的充分条件。
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WSEAS Transactions on Fluid Mechanics
WSEAS Transactions on Fluid Mechanics Engineering-Computational Mechanics
CiteScore
1.50
自引率
0.00%
发文量
20
期刊介绍: WSEAS Transactions on Fluid Mechanics publishes original research papers relating to the studying of fluids. We aim to bring important work to a wide international audience and therefore only publish papers of exceptional scientific value that advance our understanding of this particular area. The research presented must transcend the limits of case studies, while both experimental and theoretical studies are accepted. It is a multi-disciplinary journal and therefore its content mirrors the diverse interests and approaches of scholars involved with multiphase flow, boundary layer flow, material properties, wave modelling and related areas. We also welcome scholarly contributions from officials with government agencies, international agencies, and non-governmental organizations.
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