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Magnetohydrodynamic mixed convection flow in vertical concentric annuli with time periodic boundary condition: Steady periodic regime

机译:具有时间周期边界条件的垂直同心环空中的磁流体动力混合对流:稳态周期状态

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This work reports an analytical solution for fully developed mixed convection flow of viscous,incompressible, electrically conducting fluid in vertical concentric annuli under the influence of a transverse magnetic field, where the outer surface of inner cylinder is heated sinusoidally and the inner surface of outercylinder is kept at a constant temperature. The analysis is carried out for fully developed parallel flow and steady-periodic regime. The governing dimensionless momentum and energy equations are separated into steadyand periodic parts and solved analytically. Closed form solutions are expressed in terms of modified Bessel function of first and second kind. The influence of each governing parameters such as magnetic field parameter,Prandtl number and the dimensionless frequency of heating on flow formation and thermal behaviour are discussed with the aid of graphs. During the course of investigation, it is found that the oscillation amplitude of the friction factor is maximized at a resonance frequency near the surface of the concentric annuli where there is periodic heating. Furthermore, increasing transverse magnetic field decreases the oscillation amplitude of the friction factor.
机译:这项工作报告了一种解决方案,该解决方案是在横向磁场的作用下,在垂直同心环形空间中充分发展粘性,不可压缩,导电流体的混合对流的,内部圆柱体的外表面被正弦加热,而外部圆柱体的内表面被正弦加热。保持恒温。对充分发展的平行流和稳态周期进行分析。控制的无量纲动量和能量方程分为稳态和周期性两部分,并进行解析求解。封闭形式的解决方案用第一类和第二类的修正贝塞尔函数表示。借助图形讨论了诸如磁场参数,普朗特数和加热的无量纲频率等各个控制参数对流动形成和热行为的影响。在研究过程中,发现摩擦因数的振幅在共振频率处在同心环表面附近的共振频率处最大,在该处周期性加热。此外,增加横向磁场会减小摩擦系数的振荡幅度。

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