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Lie Group Analysis and Numerical Solution of Magnetohydrodynamic Free Convective Slip Flow of Micropolar Fluid Over a Moving Plate With Heat Transfer

机译:传热运动板上微极性流体磁流体动力学自由对流滑移的李群分析和数值解

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摘要

In this paper, we investigate magnetohydrodynamic free convective flow of micropolar fluid over a moving flat plate using the Lie group transformations and numerical methods. Instead of using conventional no-slip boundary conditions, we used both the velocity and thermal slip boundary conditions to achieve physically realistic and practically useful results. The governing boundary layer equations are non-dimensionalized and transformed into a set of coupled ordinary differential equations (ODEs) using similarity transformations generated by the Lie group, before being solved numerically using Matlab stiff ODE solver ode15s and Matlab trust-region-reflective algorithm lsqnonlin. The effects of governing parameters on the dimensionless velocity, angular velocity, temperature, skin friction and heat transfer rate are investigated. Our analysis revealed that the dimensionless velocity and angular velocity decrease whilst the dimensionless temperature increases with the velocity slip parameter. Thermal slip reduces the dimensionless velocity and temperature but raises the dimensionless angular velocity. Magnetic field suppresses the velocity but elevates the temperature and angular velocity. Results reported in this paper are in good agreement with the ones reported by the previous authors.
机译:在本文中,我们使用李群变换和数值方法研究了移动平板上微极性流体的磁流体动力学自由对流。代替使用常规的无滑移边界条件,我们同时使用了速度和热滑移边界条件,以实现物理上实际和实用的结果。在使用Matlab刚性ODE求解器ode15s和Matlab信赖域反射算法lsqnonlin进行数值求解之前,使用由Lie组生成的相似度变换对控制边界层方程进行无量纲化并将其转换为一组耦合的常微分方程(ODE)。 。研究了控制参数对无量纲速度,角速度,温度,皮肤摩擦和传热速率的影响。我们的分析表明,无量纲速度和角速度会降低,而无量纲温度会随着速度滑移参数而增加。热滑移降低了无量纲的速度和温度,但提高了无量纲的角速度。磁场会抑制速度,但会升高温度和角速度。本文报道的结果与以前的作者报道的结果非常吻合。

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