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Study of MHD boundary layer flow over a heated stretching sheet with variable viscosity: A numerical reinvestigation

机译:MHD边界层在可变粘度的加热拉伸片上流动的数值再研究

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This work is a critique to a paper published in the International Journal of Heat and Mass Transfer 48 (2005) 4460-4466, which concerns the boundary layer flow of an electrically conducting incompressible fluid over a heated stretching sheet. The flow is permeated by a uniform transverse magnetic field and the fluid viscosity is assumed to vary as a linear function of temperature. In the published paper the calculation domain was small and the temperature profiles are truncated. Although the dynamic viscosity has been considered a function of temperature and consequently variable inside the boundary layer the Prandtl number, which depends on viscosity, has been considered constant inside the boundary layer. The results of the present work are obtained with the direct numerical solution of the boundary layer equations taking into account both viscosity and Prandtl number variation across the boundary layer. The temperature profiles of the present work are quite different from those of the above work.
机译:这项工作是对发表在国际热与质量传递杂志48(2005)4460-4466上的论文的批评,该论文涉及导电不可压缩流体在加热的拉伸片材上的边界层流动。流动被均匀的横向磁场渗透,并且流体粘度被假定为温度的线性函数而变化。在已发表的论文中,计算域很小,并且温度曲线被截断。尽管动态粘度被认为是温度的函数,因此在边界层内部是可变的,但取决于粘度的普朗特数在边界层内部被认为是恒定的。本工作的结果是通过考虑边界层的粘度和普朗特数变化两者的边界层方程的直接数值解而获得的。本工作的温度曲线与上述工作的温度曲线有很大不同。

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