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Magnetofluidconvection in a Rotating Porous Layer Under Modulated Temperature on the Boundaries

机译:边界上调制温度下旋转多孔层中的磁流体对流

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Thermal instability in an electrically conducting fluid saturated porous medium, confined between two horizontal walls, has been investigated in the presence of an applied vertical magnetic field and rotation, using the Brinkman model. The temperature gradient between the walls of the fluid layer consists of a steady part and a time-dependent oscillatory part. Only infinitesimal disturbances are considered. The combined effect of permeability, rotation, vertical magnetic field, and temperature modulation has been investigated using Galerkin 's method and Floquet theory. The value of the critical Ray-leigh number is calculated as function of amplitude and frequency of modulation, Chan-drasekhar number, Taylor number, porous parameter, Prandtl number, and magnetic Prandtl number. It is found that rotation, magnetic field, and porous medium all have a stabilizing influence on the onset of thermal instability. Further, it is also found that it is possible to advance or delay the onset of convection by proper tuning of the frequency of modulation of the walls' temperature. In addition the results corresponding to the Brinkman model and Darcy model have been compared for neutral instability.
机译:使用布林克曼模型,在存在垂直磁场和旋转的情况下,研究了导电流体饱和多孔介质(位于两个水平壁之间)的热不稳定性。流体层壁之间的温度梯度由稳定部分和随时间变化的振荡部分组成。仅考虑极小的干扰。使用Galerkin方法和Floquet理论研究了磁导率,旋转,垂直磁场和温度调制的综合作用。临界瑞利数的值被计算为调制幅度和频率,Chan-drasekhar数,泰勒数,多孔参数,普朗特数和磁普朗特数的函数。发现旋转,磁场和多孔介质都对热不稳定性的发作具有稳定的影响。此外,还发现可以通过适当调节壁的温度的调制频率来提前或延迟对流的开始。此外,已将与Brinkman模型和Darcy模型相对应的结果进行了中性不稳定性比较。

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