非定常自然对流传热通过嵌入在含分数old - yd- b流体饱和多孔介质中的垂直平板

Jinhu Zhao, Liancun Zheng, Xinxin Zhang, Fawang Liu, Xuehui Chen
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引用次数: 30

摘要

本文用改进的分数阶达西定律研究了多孔介质中广义oldyd - b流体的自然对流换热问题。利用动量方程中的时间-空间分数阶导数,建立了非线性耦合边界层控制方程。采用新提出的有限差分法结合l1算法得到了数值解。给出了相关参数对速度场和温度场的影响,并进行了详细分析。结果表明,与普朗特数只影响传热的经典结果不同,普朗特数对速度边界层和温度边界层都有显著的影响,普朗特数低时平均努塞尔数急剧上升,但随着普朗特数的增加而缓慢增加。速度剖面最大值和动量边界层厚度随孔隙度和达西数的增大而增大。松弛分数阶导数参数能显著加速对流流动并减弱弹性效应,而迟滞分数阶导数参数能显著减缓运动并增强弹性效应。
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Unsteady Natural Convection Heat Transfer Past a Vertical Flat Plate Embedded in a Porous Medium Saturated With Fractional Oldroyd-B Fluid
This paper investigates natural convection heat transfer of generalized Oldroyd-B fluid in a porous medium with modified fractional Darcy's law. Nonlinear coupled boundary layer governing equations are formulated with time–space fractional derivatives in the momentum equation. Numerical solutions are obtained by the newly developed finite difference method combined with L1-algorithm. The effects of involved parameters on velocity and temperature fields are presented graphically and analyzed in detail. Results indicate that, different from the classical result that Prandtl number only affects the heat transfer, it has remarkable influence on both the velocity and temperature boundary layers, the average Nusselt number rises dramatically in low Prandtl number, but increases slowly with the augment of Prandtl number. The maximum value of velocity profile and the thickness of momentum boundary layer increases with the augment of porosity and Darcy number. Moreover, the relaxation fractional derivative parameter accelerates the convection flow and weakens the elastic effect significantly, while the retardation fractional derivative parameter slows down the motion and strengthens the elastic effect.
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