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Numerical Study of Natural Convection Heat Transfer in an Inclined Porous Cavity with Time-Periodic Boundary Conditions

机译:周期边界条件下倾斜孔腔中自然对流换热的数值研究

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摘要

Kalabin et al. (Numer. Heat Transfer A 47,621-631, 2005) studied the unsteady natural convection for the sinusoidal oscillating wall temperature on one side wall and constant average temperature on the opposing side wall. The present article is on the unsteady natural convective heat transfer in an inclined porous cavity with similar temperature boundary conditions as those of Kalabin et al. The inclined angle φ of the cavity is varied from 0° to 80°. The flow field is modeled with the Brinkman-extended Darcy model. The combined effects of inclination angle of the enclosure and oscillation frequency of wall temperature are studied for Ra~* = 10~3, Da = 10~(-3), ε = 0.6, and Pr=1. Some results are also obtained with the Darcy-Brinkman-Forchheimer model and Darcy's law and are compared with the present Brinkman-extended Darcy model. The maximal heat transfer rate is attained at the oscillating frequency f = 46.77π and the inclined angle φ = 42.2°.
机译:Kalabin等。 (Numer。Heat Transfer A 47,621-631,2005)研究了一个侧壁的正弦振荡壁温度和相对的侧壁的恒定平均温度的非稳态自然对流。本文讨论的是倾斜多孔腔中的不稳定自然对流传热,其温度边界条件与Kalabin等人相似。腔的倾斜角在0°至80°之间变化。用Brinkman扩展的Darcy模型对流场进行建模。在Ra〜* = 10〜3,Da = 10〜(-3),ε= 0.6,Pr = 1的情况下,研究了机壳倾角和壁温振荡频率的综合影响。使用Darcy-Brinkman-Forchheimer模型和Darcy定律也可以获得一些结果,并将其与当前Brinkman扩展的Darcy模型进行比较。在振荡频率f =46.77π和倾斜角φ= 42.2°时可获得最大的传热率。

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