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Numerical investigation of the laminar natural convection heat transfer from two horizontally attached horizontal cylinders

机译:两个水平安装的水平圆柱体的层流自然对流换热的数值研究

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In this work, natural convection heat transfer from two horizontally attached cylinders in air has been studied numerically over the range of Rayleigh number 10 ≤ Ra ≤ 10~5. A new model proposed by Bejan et al. (1995) is applied here, and it has been proved to be a more accurate and effective method for the numerical simulation of the natural convection in free space than other models used previously. Furthermore, the representative results for streamlines, isothermal contours, local Nusselt number and local drag coefficients have been presented with different Rayleigh numbers. It can be observed that there form two recirculation vortexes in the wake region when the two plumes begin to merge, and their sizes grow with the increasing Rayleigh number due to the downstream movement of the front stagnation point and the upstream movement of the separation point. Owing to the interactions of their plumes, the location of the maximum value of local Nusselt number moves downstream along the cylinder surface, i.e., it displaces to 133-150° depending on the Rayleigh number whereas it always occurs at the front stagnation point corresponding to 90° for a single cylinder. However, because the thinnest boundary layer in this work still hardly penetrates the small clearance between them and then influences their heat transfer, their interactions are independent of the Rayleigh number. Finally, a new correlating equation of the average Nusselt number with the Rayleigh number for the present configuration, has been proposed.
机译:在这项工作中,在瑞利数10≤Ra≤10〜5的范围内,对来自两个水平连接的气缸在空气中的自然对流传热进行了数值研究。 Bejan等人提出的新模型。 (1995)在这里被应用,并且它被证明是一种比以前使用的其他模型更精确有效的方法,用于对自由空间中自然对流进行数值模拟。此外,具有不同瑞利数的流线,等温线,局部努塞尔特数和局部阻力系数的代表性结果已被提出。可以观察到,当两​​个羽流开始融合时,在尾流区域中会形成两个回流涡流,并且由于前停滞点的下游运动和分离点的上游运动,它们的大小会随着瑞利数的增加而增长。由于羽流的相互作用,局部努塞尔特数最大值的位置沿圆柱体表面向下游移动,即,根据瑞利数,其位移到133-150°,而它总是出现在与之对应的前停滞点处。单缸90°。但是,由于这项工作中最薄的边界层仍然很难穿透它们之间的小间隙,然后影响它们的热传递,因此它们的相互作用与瑞利数无关。最后,针对该结构,提出了平均努塞尔数与瑞利数的新的相关方程。

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