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Numerical Analysis of Natural Convection Heat Transfer From a Vertical Hollow Cylinder Suspended in Air

机译:垂直空心圆柱体在空气中自然对流换热的数值分析

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Natural convection heat transfer from a vertical hollow cylinder suspended in air has been analyzed numerically by varying the Rayleigh number (Ra) in the laminar (10 ~( 4 ) ≤ Ra ≤ 10 ~( 8 ) ) regime. The simulations have been carried out by changing the ratio of length to pipe diameter (L/D) in the range of 0.05 ≤ L/D ≤ 20 . Full conservation equations have been solved numerically for a vertical hollow cylinder suspended in air using algebraic multigrid solver of fluent 13.0 . The flow and the temperature field around the vertical hollow cylinder have been observed through velocity vectors and temperature contours for small and large L/D. It has been found that the average Nusselt number (Nu) for vertical hollow cylinder suspended in air increases with the increase in Rayleigh number (Ra) and the Nu for both the inner and the outer surface also increases with Ra. However, with the increase in L/D, average Nu for the outer surface increases almost linearly, whereas the average Nu for the inner surface decreases and attains asymptotic value at higher L/D for low Ra. In this study, the effect of parameters like L/D and Ra on Nu is analyzed, and a correlation for average Nusselt number has been developed for the laminar regime. These correlations are accurate to the level of ± 6 % .
机译:通过改变层流(10〜(4)≤Ra≤10〜(8))区域的瑞利数(Ra),对悬浮在空气中的垂直空心圆柱体的自然对流传热进行了数值分析。通过在0.05≤L / D≤20的范围内更改长度与管道直径的比率(L / D)进行模拟。使用流形13.0的代数多重网格求解器对悬浮在空中的垂直中空圆柱进行了数值求解的完全守恒方程。通过小和大L / D的速度矢量和温度等高线,可以观察到垂直空心圆柱体周围的流动和温度场。已经发现,悬浮在空气中的垂直空心圆柱体的平均努塞尔数(Nu)随瑞利数(Ra)的增加而增加,内外表面的Nu均随Ra的增加而增加。但是,随着L / D的增加,外表面的平均Nu几乎呈线性增加,而内表面的平均Nu减小,并且在较低的Ra下以较高的L / D达到渐近值。在这项研究中,分析了L / D和Ra等参数对Nu的影响,并为层流状态开发了平均Nusselt数的相关性。这些相关精确到±6%的水平。

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