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Turbulent flow in rib-roughened channel under the effect of Coriolis and rotational buoyancy forces

机译:在科里奥利力和旋转浮力的作用下,肋肋通道中的紊流

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摘要

The turbulent flow inside a rotating channel provided with transverse ribs along one wall is studied by means of two-dimensional time-resolved particle image ve- locimetry. The measurement set-up is mounted on the same rotating disk with the test section, allowing to obtain the same accuracy and resolution as in a non-rotating rig. The Reynolds number is 15 000, and the rotation number is 0.38. As the ribbed wall is heated, both the Coriolis force and the centrifugal force play a role in the fluid dynamics. The mean velocity fields highlight the major impact of the rotational buoyancy (characterized by a buoyancy number of 0.31) on the flow along the lead- ing side of the duct. In particular, since the flow is directed radially outward, the near-wall layers experience significant centripetal buoyancy. The recirculation area behind the obstacles is enlarged to the point of spanning the whole inter-rib space. Also the turbulent fluctuations are significantly altered, and overall augmented, with respect to the non-buoyant case, resulting in higher turbulence levels far from the rib. On the other hand the centrifugal force has little or no impact on the flow along the trailing wall. Vortex identification, proper orthogonal decomposition, and two-point correlations are used to highlight rotational effects, and in particular to determine the dominant scales of the turbulent unsteady flow, the time-dependent behavior of the shear layer and of the recirculation bubble behind the wall-mounted obstacles, the lifetime and advection velocity of the coherent structures.
机译:利用二维时间分辨粒子图像测速技术研究了沿一壁设有横向肋的旋转通道内部的湍流。测量装置与测试部分安装在同一转盘上,从而获得与非旋转钻机相同的精度和分辨率。雷诺数为15000,转数为0.38。当肋壁被加热时,科里奥利力和离心力都在流体动力学中起作用。平均速度场突显了旋转浮力(以0.31的浮力为特征)对沿导管引导侧流动的主要影响。特别地,由于流动被径向向外引导,所以近壁层经历显着的向心浮力。障碍物后面的再循环区域扩大到跨越整个肋间空间的程度。此外,相对于非浮力情况,湍流波动被显着改变,并且总体上增加了,导致远离肋骨的湍流水平更高。另一方面,离心力对沿后壁的流动几乎没有影响。涡流识别,适当的正交分解和两点相关性用于突出显示旋转效应,特别是确定湍流非恒定流的主导尺度,剪切层和壁后再循环气泡随时间变化的行为障碍物,相干结构的寿命和对流速度。

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