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首页> 外文期刊>Journal of geophysics and engineering >The effect of magnetic-field-dependent viscosity and rotation on ferrothermohaline convection saturating a porous medium in the presence of dust particles
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The effect of magnetic-field-dependent viscosity and rotation on ferrothermohaline convection saturating a porous medium in the presence of dust particles

机译:在粉尘存在的情况下,磁场依赖性粘度和旋转对铁盐热对流使多孔介质饱和的影响

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This paper deals with the theoretical investigation of the combined effect of magnetic-field-dependent (MFD) viscosity and rotation on ferrothermohaline convection saturating a porous medium in the presence of dust particles subjected to a transverse uniform magnetic field. For a flat fluid layer contained between two free boundaries, an exact solution is obtained using a linearized stability theory and the normal mode analysis method. For the case of stationary convection, dust particles always have a destabilizing effect, whereas rotation, stable solute gradient and magnetic-field-dependent viscosity always have a stabilizing effect on the onset of convection. In the absence of rotation, the destabilizing effect of medium permeability is depicted, but in the presence of rotation, medium permeability may have a destabilizing or a stabilizing effect on the onset of convection. In the absence of MFD viscosity, the destabilizing effect of non-buoyancy magnetization is depicted, but in the presence of MFD viscosity, non-buoyancy magnetization may have a destabilizing or a stabilizing effect on the onset of convection. The critical wave number and critical magnetic thermal Rayleigh number for the onset of instability are also determined numerically for sufficiently large values of magnetic parameter M-1 and results are depicted graphically. The principle of exchange of stabilities is found to hold true for the ferromagnetic fluid saturating a porous medium heated from below in the absence of dust particles, stable solute gradient and rotation. The oscillatory modes are introduced due to the presence of the dust particles, stable solute gradient and rotation, which were non-existent in their absence. The sufficient conditions for the non-existence of overstability are also obtained.
机译:本文研究了磁场依赖性(MFD)粘度和旋转对在横向均匀磁场作用下存在尘埃粒子的情况下饱和多孔介质的铁盐热对流的联合作用的理论研究。对于包含在两个自由边界之间的平坦流体层,使用线性化稳定性理论和正态分析方法可获得精确解。对于固定对流,粉尘颗粒始终具有去稳定作用,而旋转,稳定的溶质梯度和取决于磁场的粘度始终对对流发生具有稳定作用。在没有旋转的情况下,示出了介质渗透性的去稳定作用,但是在存在旋转的情况下,介质的渗透性可能在对流发生时具有去稳定作用或稳定作用。在没有MFD粘度的情况下,描述了非浮力磁化的稳定作用,但是在存在MFD粘度的情况下,非浮力磁化可能对对流开始有稳定作用或稳定作用。对于足够大的磁参数M-1值,还通过数值确定了不稳定开始的临界波数和临界磁热瑞利数,并以图形方式描绘了结果。对于在没有粉尘颗粒,稳定的溶质梯度和旋转的情况下使从下方加热的多孔介质饱和的铁磁流体,发现了交换稳定性的原理。由于存在尘埃颗粒,稳定的溶质梯度和旋转而引入了振荡模式,而在不存在这些尘埃颗粒时不存在。还获得了不存在过度稳定性的充分条件。

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