Effect of magnetic field on the onset of thermal convection in a Jeffery nanofluid layer saturated by a porous medium: free-free, rigid-rigid and rigid-free boundary conditions

Ajit Kumar Ajit Kumar, Dr Pushap Lata, Praveen Lata Praveen Lata, Deepak Bains Deepak Bains, Pankaj Thakur Pankaj Thakur
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Abstract

The effect of the magnetic field on the onset of thermal convection in a porous layer saturated by Jeffrey nanofluid is studied. Three distinct boundary conditions are considered to be free-free, rigid-rigid and rigid-free boundaries. The model used for Jeffrey nanofluid includes the effect of Brownian motion and thermophoresis. The normal mode analysis as well as the Galerkin first approximation technique is used. The effects of the Rayleigh number of nanoparticles, Lewis number, modified diffusivity ratio, Jeffery parameter, porosity and Chandrasekhar number are investigated analytically and graphically. It is discovered that the Chandrasekhar number, Lewis number and modified diffusivity ratio have a stabilizing effect while the Jeffery parameter, nanoparticles Rayleigh number and porosity have a destabilizing effect. This study induces the effect of Chandrasekhar number and Jeffrey nanofluid. We have analyzed that Chandrasekhar number produces a stabilizing effect on the onset of convection i.e. it delays the onset of convection whereas the Jeffrey parameter which comes from Jeffrey nanofluid shows the destabilizing effect on the onset of convection i.e. it accelerates the onset of convection. The influence of a magnetic field on the commencement of nanofluid convection is significant in magnetohydrodynamic power generators, electrical equipment, petroleum reservoirs, nuclear reactors, biochemical engineering, chemical engineering and geophysics.
磁场对多孔介质饱和的杰弗里纳米流体层中热对流起始的影响:自由-自由、刚性-刚性和无刚性边界条件
研究了磁场对杰弗里纳米流体饱和多孔层中热对流开始的影响。考虑了三种不同的边界条件,即自由无边界、刚性刚性边界和无刚性边界。Jeffrey 纳米流体模型包括布朗运动和热泳效应。采用了法模分析和 Galerkin 第一次近似技术。对纳米粒子的瑞利数、路易斯数、修正扩散比、杰弗里参数、孔隙率和钱德拉塞卡数的影响进行了分析和图解研究。研究发现,钱德拉塞卡数、路易斯数和修正扩散比具有稳定作用,而杰弗里参数、纳米粒子瑞利数和孔隙率具有失稳作用。本研究诱导了钱德拉塞卡数和杰弗里纳米流体的影响。我们分析发现,钱德拉塞卡数对对流的发生具有稳定作用,即延迟对流的发生,而来自杰弗里纳米流体的杰弗里参数对对流的发生具有不稳定作用,即加速对流的发生。磁场对纳米流体开始对流的影响在磁流体动力发电机、电气设备、石油储层、核反应堆、生化工程、化学工程和地球物理学中都非常重要。
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