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首页> 外文期刊>Physics of fluids >Torque and pressure fluctuations in turbulent von Karman swirling flow between two counter-rotating disks. I
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Torque and pressure fluctuations in turbulent von Karman swirling flow between two counter-rotating disks. I

机译:在两个反向旋转的圆盘之间的湍流von Karman涡流中,转矩和压力的波动。一世

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We report the experimental studies of the statistical and scaling properties of the fully developed turbulent regime in von Karman swirling flow between counterrotating disks with and without blades using the only global measurements of the spatially averaged torque Γ and pressure p fluctuations in water and water-sugar solutions of different viscosities in the same cell geometry. We show that for all fluids under investigation probability distribution functions (PDFs) of the torque fluctuations δΓ/Γ_(rms) are Gaussian in both the laminar and turbulent regimes and for the both types of the stirrers. On the contrary, PDFs of the pressure fluctuations change from Gaussian in the laminar regime into the skewed shape with the exponential tails toward low-pressure events for both the entrainment methods. Both the friction coefficient C_f and normalized rms of the pressure fluctuations C_p are independent of Re in the fully developed turbulent regime for all fluids under study and found in a good quantitative agreement with the previous results. We also observe that the internal flow variables such as the normalized torque Γ /V prms versus the "internal" Reynolds number Re_(rms) = (p_(rms)/ρ)~(1/2)Rρ/η instead of the global variables Cf, Cp versus Re show sharp transition into the well developed turbulent regime. We find that the scaling exponents of the fundamental characteristics based only on Γ and p measurements in the range of fully developed turbulent flow, namely, the integral, Taylor, and Kolmogorov dissipation lengths, as well as the Taylor-based Reynolds number Rλ, are in rather fair agreement with the predictions. We would like to emphasize that scaling of the main turbulent parameters R_λ, λ, η_d obtained via the global variables is a very non-trivial result. It is not obvious that measurements based on the global quantitieswill provide the predicted scaling relations. The result on such scaling obtained previously strongly disagrees with the scaling predictions. Indeed, both Γ and p_(rms) are averaged over the cell volume as well as all spatial scales, whereas the swirling flow is neither isotropic nor homogeneous. So the global variables being averaged over all spatial scales get contributions from the scales larger and smaller than those from the inertial range of scales. And finally, the normalized characteristic frequencies f_p/f_(rot) found in both the torque and pressure frequency power spectra in the fully developed turbulent regime have close values, are independent of Re, and associated with either the rotation or oscillation frequency of the main vortex.
机译:我们报告了使用水和糖的空间平均扭矩Γ和压力p波动的唯一整体测量方法,对具有和不具有叶片的反向旋转盘之间的冯卡曼旋流中完全发达的湍流状态的统计和缩放性质的实验研究。同一单元几何中不同粘度的溶液。我们表明,对于所有正在研究的流体,在层流和湍流状态以及两种类型的搅拌器中,扭矩波动δΓ/Γ_(rms)的概率分布函数(PDFs)均为高斯分布。相反,对于两种夹带方法,压力波动的PDF都从层流状态下的高斯变化为偏斜形状,并以指数尾向低压事件。摩擦系数C_f和压力波动C_p的归一化rms在研究的所有流体的充分发展的湍流状态下均与Re无关,并且与先前的结果在定量上吻合得很好。我们还观察到内部流量变量,例如归一化扭矩Γ/ V prms与“内部”雷诺数Re_(rms)=(p_(rms)/ρ)〜(1/2)Rρ/η而不是全局变量变量Cf,Cp与Re的关系表明,已迅速过渡到发达的湍流区。我们发现,仅在完全发展的湍流范围内,仅基于Γ和p测量的基本特征的缩放指数,即积分,泰勒和Kolmogorov耗散长度以及基于泰勒的雷诺数Rλ为与预测相当公平。我们要强调的是,通过全局变量获得的主要湍流参数R_λ,λ,η_d的换算是非常重要的结果。基于全局数量的测量将提供预测的比例关系并不明显。先前获得的这种缩放结果与缩放预测完全不同。实际上,Γ和p_(rms)都是在整个细胞体积以及所有空间尺度上求平均值的,而旋流既不是各向同性的,也不是均质的。因此,在所有空间尺度上进行平均的全局变量所得到的贡献要大于和小于惯性尺度所得到的贡献。最后,在完全发展的湍流状态下,在扭矩和压力频率功率谱中发现的归一化特征频率f_p / f_(rot)具有接近的值,与Re无关,并且与主电机的旋转或振荡频率相关涡流。

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