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Numerical investigation of flow and heat transfer characteristics from an impinging jet on a circular cylinder

机译:圆柱撞击流的流动与传热特性的数值研究

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A study has been made of the flow and heat transfer to a circular cylinder from an isothermal impinging air jet. Numerical solutions of the governing conservation equations have been obtained utilizing a non-orthogonal curvilinear coordinate grid. The study focused on low Reynolds numbers (based on nozzle average exit velocity and cylinder diameter) in the range of 132-1315 and H/W = 2, 4, 6 and 8 which corresponds to the ratio of distance between the nozzle and cylinder to nozzle width. The flow is stable and symmetric over the range of parameters studied. The effects of buoyancy, diffusion and cooling of the cylinder, the development of the wall jet, and the recirculating bubble all affect the flow and heat transfer. The average Nusselt number increases with increasing Reynolds. Also the distance between the nozzle and the cylinder has a strong effect on the heat transfer.
机译:已经研究了从等温撞击空气流向圆柱体的流动和热传递。利用非正交曲线坐标网格已经获得了控制守恒方程的数值解。该研究集中于低雷诺数(基于喷嘴的平均出口速度和圆柱直径),范围为132-1315,H / W = 2、4、6和8,这对应于喷嘴与圆柱之间的距离与喷嘴宽度。在研究的参数范围内,流量稳定且对称。圆柱体的浮力,扩散和冷却,壁射流的发展以及再循环气泡的影响都会影响流动和传热。随着雷诺数的增加,平均努塞尔数增加。喷嘴和气缸之间的距离也对传热有很大影响。

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