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Numerical Investigation of Natural Convection Heat Transfer on Aligned Arrangement Tube Banks

机译:对准布置管堤自然对流传热的数值研究

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The aim of the present study is to numerical investigate the 2-D natural convection heat transfer on an aligned arrangement of tube banks. The fluid was considered to be Newtonian, laminar and steady state with Boussinesq approximation. Number of tube was varied from 6 to 8 and Rayleigh number changed from 10~6 to 10~8. The ratio of longitude distance to cylinder's diameter (dL /D) and the ratio of transverse distance to cylinder's diameter (dT /D) were varied in rang of 1.5, 2 and 3. Tubes diameter and the passing air temperature were assumed to be 30cm and 300K respectively. The computational fluid dynamics was used to investigate the changes of the mean Nusselt number of the fluid passing through aligned arrangement of tube banks. The results showed that the maximum heat transfer rate was for the case with dT /D=2, dL /D=2 and Ra=10~8 characteristics.
机译:本研究的目的是数值研究管芯的对准布置上的2-D天然对流传热。流体被认为是牛顿,层状和稳态,Boussinesq近似。管数量从6到8和瑞利数变为10〜6至10〜8。在1.5,2和3.管直径的范围内变化了1.5,2和3的圆柱直径(DL / D)与圆柱直径(DT / d)的比率和横向距离(DT / D)的比率。假设通过空气温度为30cm和300k分别。使用计算流体动力学用于研究通过管芯的对准排列的平均泡沫数的变化。结果表明,具有DT / D = 2,DL / D = 2和RA = 10〜8个特征的情况下,最大传热速率是针对DT / D = 2的情况。

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