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Yang, K. and Kambiz, V. (2011) Analysis of Heat Flux Bifurcation inside Porous Media Incorporating Inertial and Disperion—An Exact Solution. International Journal of Heat and Mass Transfer, 54, 5286-5297.
http://dx.doi.org/10.1016/j.ijheatmasstransfer.2011.08.014

被以下文章引用:

  • 标题: 金属泡沫–水的自然对流换热实验研究Experimental Investigation of Natural Convection in Metal Foam-Water

    作者: 彭招, 潘阳, 钱维扬

    关键字: 金属泡沫–水, 自然对流, 温差, 孔密度Metal Foam-Water, Natural Convection, Difference of Temperature, Pore Density

    期刊名称: 《Advances in Porous Flow》, Vol.6 No.1, 2016-03-31

    摘要: 本文针对多孔介质材料中的自然对流换热问题,通过搭建充满金属泡沫–水的实验装置,探究了金属泡沫–水自然对流换热机理,讨论了加热功率、箱体倾斜角度对方腔内金属泡沫-水两相自然对流换热的影响,实验发现努谢尔数Nu随加热功率的增加而变大,随着倾斜角度的增大而变小,随着金属泡沫孔密度PPI的增大而减小。最终得到了箱体水平放置时5 PPI和10 PPI努谢尔数Nu随瑞利数Ra的变化规律。 In this paper, an experiment apparatus filled with metal foam-water is set up to investigate the problem of natural convection about porous medium. A mechanism of natural convection of metal foam-water is investigated by experiments. Influences of heating power and angle of inclination on natural convection in the cavity filled with metal foam-water are discussed. It is found that the Nusselt number increases with heating power and decreases with the angle of inclination and pore density PPI of metal foam. A correlation of Nusselt number and Raleigh number is obtained when the cavity is horizontal with 5 PPI and 10 PPI.

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