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Numerical Study of the Magnetic Field Effects on the Heat Transfer and Entropy Generation Aspects of a Power Law Fluid over an Axisymmetric Stretching Plate Structure

机译:磁场对轴对称拉伸板结构上幂律流体传热和熵产方面的数值研究

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Numerical investigation of the effects of magnetic field strength, thermal radiation, Joule heating, and viscous heating on a forced convective flow of a non-Newtonian, incompressible power law fluid in an axisymmetric stretching sheet with variable temperature wall is accomplished. The power law shear thinning viscosity-shear rate model for the anisotropic solutions and the Rosseland approximation for the thermal radiation through a highly absorbing medium are considered. The temperature dependent heat sources, Joule heating, and viscous heating are considered as the source terms in the energy balance. The non-dimensional boundary layer equations are solved numerically in terms of similarity variable. A parameter study on the Nusselt number, viscous components of entropy generation, and thermal components of entropy generation in fluid is performed as a function of thermal radiation parameter (0 to 2), Brinkman number (0 to 10), Prandtl number (0 to 10), Hartmann number (0 to 1), power law index (0 to 1), and heat source coefficient (0 to 0.1).
机译:数值研究了磁场强度,热辐射,焦耳加热和粘性加热对非牛顿不可压缩幂律流体在壁温可变的轴对称拉伸片中强迫对流的影响的数值研究。考虑了各向异性溶液的幂律剪切稀化粘度-剪切速率模型和通过高吸收介质的热辐射的Rosseland近似。温度相关的热源,焦耳加热和粘性加热被视为能量平衡中的热源。无量纲边界层方程根据相似性变量进行数值求解。根据热辐射参数(0到2),Brinkman数(0到10),Prandtl数(0到0)进行流体中Nusselt数,熵产生的粘性成分和熵产生的热成分的参数研究10),哈特曼数(0到1),幂律指数(0到1)和热源系数(0到0.1)。

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