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Influence of Rotating Speed Ratio on the Annular Turbulent Flow between Two Rotating Cylinders

机译:转速比对两个旋转气缸间环形湍流的影响

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Rotating flows represent a very interesting area for researchers and industry for their extensive use in industrial and domestic machinery and especially for their great energy potential, annular flows are an example that draws the attention of researchers in recent years. The best design and optimization of these devices require knowledge of thermal, mechanical and hydrodynamic characteristics of flows circulating in these devices. An example of hydrodynamic parameters is the speed of rotation of the moving walls. This work is to study numerically the influence of the rotating speed ratio Γ of the two moving cylinders on the mean and especially on the turbulent quantities of the turbulent flow in the annular space. The numerical simulation is based on one-point statistical modeling using a low Reynolds number second-order full stress transport closure (RSM model), simulation code is not a black box but a completely transparent code where we can intervene at any step of the calculation. We have varied Γ from -1.0 to 1.0 while maintaining always the external cylinder with same speed Ω. The results show that the turbulence structure, profiles of mean velocities and the nature of the boundary layers of the mobile walls depend enormously on the ratio of speeds. The level of turbulence measured by the kinetic energy of turbulence and the Reynolds stresses shows well that the ratio Γ is an interesting parameter to exploit turbulence in this kind of annular flows.
机译:旋转流是研究人员和工业界非常感兴趣的领域,因为它们广泛地用于工业和家用机械中,尤其是由于其巨大的能源潜力,环形流是引起近年来研究人员关注的一个例子。这些设备的最佳设计和优化需要了解这些设备中循环流动的热,机械和流体力学特性。流体力学参数的一个示例是移动壁的旋转速度。这项工作是从数值上研究两个运动气缸的转速比Γ对均值的影响,尤其是对环形空间中湍流的湍流量的影响。数值模拟基于使用低雷诺数二阶全应力传递闭合(RSM模型)的单点统计模型,模拟代码不是黑盒,而是完全透明的代码,我们可以在计算的任何步骤进行干预。我们将Γ从-1.0更改为1.0,同时始终使外部气缸保持相同的速度Ω。结果表明,湍流结构,平均速度分布和活动壁边界层的性质在很大程度上取决于速度比。由湍动能和雷诺应力测得的湍流水平很好地表明,比率Γ是在这种环形流中利用湍流的有趣参数。

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