MHD Stagnation-Point Flow of Casson Fluid and Heat Transfer over a Stretching Sheet with Thermal Radiation

K. Bhattacharyya
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引用次数: 121

Abstract

The two-dimensional magnetohydrodynamic (MHD) stagnation-point flow of electrically conducting non-Newtonian Casson fluid and heat transfer towards a stretching sheet have been considered. The effect of thermal radiation is also investigated. Implementing similarity transformations, the governing momentum, and energy equations are transformed to self-similar nonlinear ODEs and numerical computations are performed to solve those. The investigation reveals many important aspects of flow and heat transfer. If velocity ratio parameter (B) and magnetic parameter (M) increase, then the velocity boundary layer thickness becomes thinner. On the other hand, for Casson fluid it is found that the velocity boundary layer thickness is larger compared to that of Newtonian fluid. The magnitude of wall skin-friction coefficient reduces with Casson parameter (β). The velocity ratio parameter, Casson parameter, and magnetic parameter also have major effects on temperature distribution. The heat transfer rate is enhanced with increasing values of velocity ratio parameter. The rate of heat transfer is enhanced with increasing magnetic parameter M for B > 1 and it decreases with M for B < 1. Moreover, the presence of thermal radiation reduces temperature and thermal boundary layer thickness.
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卡森流体的MHD滞点流动和热辐射拉伸片上的传热
研究了导电非牛顿卡森流体的二维磁流体力学滞点流动和向拉伸薄片的传热问题。研究了热辐射的影响。通过相似变换,将控制动量方程和能量方程转化为自相似非线性微分方程,并进行数值计算。研究揭示了流动和传热的许多重要方面。速度比参数(B)和磁性参数(M)增大,则速度边界层厚度变薄。另一方面,卡森流体的速度边界层厚度比牛顿流体大。壁面摩擦系数的大小随Casson参数(β)的增大而减小。速度比参数、卡森参数和磁性参数对温度分布也有重要影响。传热速率随速比参数的增大而增大。当磁参数B > 1时,传热速率随磁参数M的增大而增大,当磁参数B < 1时,传热速率随磁参数M的增大而减小。此外,热辐射的存在降低了温度和热边界层厚度。
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