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Effects of non-Darcian on forced convection heat transfer over a flat plate in a porous medium-with temperature dependent viscosity

机译:非达西分布对多孔介质中平板上强制对流换热的影响(取决于温度)

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摘要

The non-Darcian effect on forced convection heat transfer over a flat plate in a porous medium is examined. The fluid viscosity is assumed to vary as an inverse linear function of temperature. The effects of inertia forces and the distance from the leading edge of the plate on the velocity and temperature fields as well as on the skin friction and heat transfer coefficients in the boundary layer over a semi-infinite plate are studied. The nonlinear boundary layer equations, governing the problem under consideration, are solved numerically by applying an efficient numerical technique based on the Keller box method. The velocity profiles, temperature profiles and the skin friction components on the plate are computed and discussed in detail numerically for various values of the variable viscosity parameter, the modified Reynolds number, the stream wise coordinate and the Prandtl number.
机译:研究了多孔介质中平板上强制对流换热的非达西效应。假定流体粘度随温度成反线性函数而变化。研究了惯性力和距板前缘的距离对速度和温度场的影响,以及对半无限板上边界层中蒙皮摩擦和传热系数的影响。通过应用基于凯勒盒法的高效数值技术,对解决所考虑问题的非线性边界层方程进行了数值求解。针对可变粘度参数,修正的雷诺数,流向坐标和普朗特数的各种值,计算并详细讨论了板上的速度曲线,温度曲线和皮肤摩擦分量。

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