Hydromagnetic axisymmetric slip flow along a vertical stretching cylinder with convective boundary condition

IF 0.2 Q4 PHYSICS, MULTIDISCIPLINARY
N. Vishnu Ganesh , B. Ganga , A.K. Abdul Hakeem , S. Saranya , R. Kalaivanan
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引用次数: 9

Abstract

The steady axi-symmetric laminar boundary-layer slip flow of a viscous incompressible fluid and heat transfer towards a vertical stretching cylinder in the presence of a uniform magnetic field is investigated. It is assumed that the left surface of the cylinder is heated by a hot convective flow. Using a similarity transformation, the governing system of partial differential equations is first transformed into a system of coupled non-linear ordinary differential equations. The resulting intricate non-linear boundary value problem is solved numerically by the fourth-order Runge Kutta method with shooting iteration technique. The analytical solutions are presented for a special case. The effects of various physical parameters on velocity and temperature profiles are discussed through graphs. The values of skin friction coefficient and the Nusselt number are tabulated and examined. It is found that the thermal boundary layer thickness increases with the increase of velocity slip, magnetic field, surface convection parameter and curvature parameter and decreases with Prandtl number.

具有对流边界条件的纵向拉伸圆柱体轴对称滑移流
研究了在均匀磁场作用下粘性不可压缩流体的定常轴对称层流边界层滑移流动和垂直拉伸圆柱体的传热问题。假设圆柱体的左表面被热对流加热。首先利用相似变换将偏微分方程控制系统转化为耦合非线性常微分方程系统。采用四阶龙格库塔法,结合射击迭代技术,对复杂的非线性边值问题进行了数值求解。给出了一个特例的解析解。通过图形讨论了各种物理参数对速度和温度分布的影响。将表面摩擦系数和努塞尔数的值制成表格并加以检验。发现热边界层厚度随速度滑移、磁场、表面对流参数和曲率参数的增大而增大,随普朗特数的增大而减小。
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