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Numerical Study of Temperature Dependent Viscosity and Thermal Conductivity on a Natural Convection Flow over a Sphere in Presence of Magneto Hydrodynamics

机译:磁流体动力学作用下球体自然对流流动的温度相关粘度和导热系数的数值研究

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The objective of this research is to investigate the numerical study of temperature dependent viscosity and thermal conductivity on natural convection flow of an electrically conducting fluid over an isothermal sphere in presence of magneto hydrodynamic. Viscosity is considered variation with temperature and also thermal conductivity is taken as a linear function of temperature. The governing equations are transformed into dimensionless non-similar equations by using set of suitable transformations and solved numerically by finite difference method along with Newton’s linearization approximation. The computational findings for dimensionless velocity profiles, temperature profiles, local skin friction coefficient and local heat transfer coefficient are displayed in graphically and also in tabular forms for different vales of the Prandtl’s number Pr , dependent viscosity parameter ε , dependent thermal conductivity parameter γ and magnetic parameter M .
机译:这项研究的目的是研究在磁流体动力作用下,等温球体上导电流体在自然对流中与温度有关的粘度和导热系数的数值研究。粘度被认为是随温度变化的,并且热导率也被视为温度的线性函数。通过使用一组合适的变换,将控制方程转换为无量纲非相似方程,并通过有限差分法和牛顿线性化近似数值求解。图形化显示了无量纲速度分布,温度分布,局部皮肤摩擦系数和局部传热系数的计算结果,并以表格形式显示了不同数量的普朗特数Pr,依赖性粘度参数ε,依赖性导热系数γ和磁性参数M。

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