首页> 外文期刊>European Journal of Mechanics, B. Fluids >Effect of bottom wall proximity on the unsteady flow structures of a combined turbulent wall jet and offset jet flow
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Effect of bottom wall proximity on the unsteady flow structures of a combined turbulent wall jet and offset jet flow

机译:底壁接近度对湍流壁面射流和偏流射流的非稳态流动结构的影响

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The present paper deals with a turbulent dual jet consisting of a wall jet and an offset jet. The flow field has been numerically simulated using two-dimensional unsteady RANS equations. The Reynolds number based on the separation distance between the two jets (s) is Re = 10, 000. The width of the offset jet nozzle equals the separation distance between the two jets. To examine the influence of the bottom wall, the width of the wall jet nozzle (h) has been varied in a range 0.2 <= h/s <= 2. According to the computational results, for h/s = 0.2, the flow field remains to be always steady with two counter-rotating stable vortices in between the two jets. On the contrary, within the range of 0.3 <= h/s <= 1, the near flow field demonstrates a periodic vortex shedding phenomenon similar to what would be observed in the near wake region for flow over a two-dimensional bluff body. Within this flow regime, the Strouhal number based on the vortex shedding frequency gradually decreases with the progressive increase in h/s. However, for h/s > 1, although the periodic vortex shedding phenomenon is still evident in the flow field, the Strouhal number becomes insensitive to the bottom wall similar to the flow behaviour for a flow over an unconfined cylinder. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:本论文涉及由壁式射流和偏置射流组成的湍流双射流。使用二维非定常RANS方程对流场进行了数值模拟。基于两个喷嘴之间的分离距离的雷诺数为Re = 10,000。偏移喷嘴的宽度等于两个喷嘴之间的分离距离。为了检查底壁的影响,壁式喷嘴的宽度(h)已在0.2 <= h / s <= 2的范围内变化。根据计算结果,对于h / s = 0.2,流量在两个射流之间有两个反向旋转的稳定涡流,因此磁场始终保持稳定。相反,在0.3≤h/s≤1的范围内,近流场表现出周期性的涡旋脱落现象,类似于在近尾流区域中观察到的二维钝体上的流动。在这种流动状态下,基于涡旋脱落频率的斯特劳哈尔数随着h / s的逐渐增加而逐渐降低。但是,对于h / s> 1,尽管在流场中仍存在周期性的涡旋脱落现象,但Strouhal数对底壁变得不敏感,类似于无限制圆柱体上的流动行为。 (C)2015 Elsevier Masson SAS。版权所有。

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