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首页> 外文期刊>International Communications in Heat and Mass Transfer >Significance of quadratic thermal radiation and quadratic convection on boundary layer two-phase flow of a dusty nanoliquid past a vertical plate
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Significance of quadratic thermal radiation and quadratic convection on boundary layer two-phase flow of a dusty nanoliquid past a vertical plate

机译:二次热辐射与二次对流对横向粉尘纳米液的边界层两相流动的意义

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摘要

Boundary layer two-phase flow of particulate Al_2O_3-H_2O nanoliquid over a vertical flat plate is studied numerically subjected to the aspects of quadratic thermal convection and quadratic thermal radiation. The Khanafer-Vafai-Lightstone monophasic nanofluid model (KVL model) and Saffman's dusty fluid model are used for the equations governing the flow of dusty nanoliquids. The quadratic Boussinesq approximation is used together with the Prandtl's boundary layer approximation. The non-linear problem is treated with the finite difference method. Surface plots and streamlines are presented to visualize the results. A comparison of linear thermal radiation, quadratic thermal radiation, and nonlinear thermal radiation is performed. Among the three types of radiation, the greatest heat transfer is observed in nonlinear thermal radiation followed by quadratic thermal radiation and linear thermal radiation. Also, in the presence of quadratic convection, the heat transport, and velocity field get enhanced. It is found that the presence of Al_2O_3 nanoparticles of 3% volume concentration in paniculate water effectively advances the heat transport of the system. However, heat transport gets reduced by increasing the mass fraction of dust particles. Furthermore, in the presence of a transverse magnetic field, the velocity of the dusty nanoliquid gets reduced.
机译:研究了垂直平板上的颗粒AL_2O_3-H_2O纳米烷基纳米烷基层的边界层两相流量,进行了二次热对流和二次热辐射的各个方面。 Khanafer-Vafai-Lightstone单体性纳米流体模型(KVL模型)和Saffman的尘土飞扬的流体模型用于控制粉尘纳米喹氢盐流动的方程。二次BoussinesQ近似与Prandtl的边界层近似一起使用。用有限差分法处理非线性问题。展示了表面图和流线以可视化结果。进行线性热辐射,二次热辐射和非线性热辐射的比较。在三种类型的辐射中,在非线性热辐射中观察到最大的传热,然后是二次热辐射和线性热辐射。而且,在存在二次对流的情况下,热传输和速度场得到增强。结果发现,存在的Al_2O_3纳米颗粒在容量水中的3%体积浓度有效地推进了系统的热传输。然而,通过增加粉尘颗粒的质量分数来降低热传输。此外,在存在横向磁场的情况下,粉尘纳米喹氢胂的速度降低。

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