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Effect of magnetic field dependent viscosity on Soret-driven ferrothermohaline convection saturating an anisotropic porous medium of sparse particle suspension

机译:磁场依赖性粘度对Soret驱动的亚铁盐酸盐对流饱和稀疏颗粒悬浮液各向异性多孔介质的影响

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摘要

Thermoconvective instability with Soret effect in multi-component fluids has wide range of applications in heat and mass transfer. This work deals with the theoretical investigation of the effect of magnetic field dependent (MFD) viscosity on Soret-driven ferrothermohaline convection heated and salted from below in an anisotropic porous medium subjected to a transverse uniform magnetic field. The resulting eigen value problem is solved using Brinkman model. An exact solution is obtained for the case of two free boundaries and the stationary and oscillatory instabilities are investigated by using linear stability analysis and normal mode technique for the vertical of anisotropic porous medium. The analysis has been made for different parameters like porosity, anisotropy, ratio of heat transport to mass transport, buoyancy magnetization, non-buoyancy magnetization, Soret parameter and Salinity Rayleigh number. The effect of MFD viscosity is assumed to be isotropy. It is found that the presence of MFD viscosity has a stabilizing effect, whereas magnetization has a destabilizing effect.
机译:在多组分流体中具有索雷特效应的热对流不稳定性在热和质量传递中具有广泛的应用。这项工作涉及磁场依赖性(MFD)粘度对在各向异性均匀的横向各向异性磁场中从下方加热和盐化的Soret驱动的铁盐热对流的影响的理论研究。由此产生的特征值问题使用Brinkman模型得以解决。对于两个自由边界的情况,获得了一个精确的解,并且通过使用线性稳定性分析和正态技术对各向异性多孔介质的垂向进行了稳态和振荡不稳定性的研究。已对不同参数进行了分析,例如孔隙度,各向异性,传热与传质的比率,浮力磁化强度,非浮力磁化强度,Soret参数和盐度瑞利数。 MFD粘度的影响被认为是各向同性的。已经发现MFD粘度的存在具有稳定作用,而磁化具有不稳定作用。

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