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湍流热对流中速度场的粒子图像测速测量。

Particle image velocimetry measurement of the velocity field in turbulent thermal convection.

作者信息

Xia Ke-Qing, Sun Chao, Zhou Sheng-Qi

机构信息

Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong, China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Dec;68(6 Pt 2):066303. doi: 10.1103/PhysRevE.68.066303. Epub 2003 Dec 17.

Abstract

The spatial structure of the velocity field in turbulent Rayleigh-Bénard convection in water has been measured using the particle image velocimetry technique, with the Rayleigh number Ra varying from 9 x 10(8) to 9 x 10(11) and the Prandtl number remaining approximately constant (Pr approximately 4). The study provides a direct confirmation that a rotatory mean wind indeed persists for the highest value of Ra reached in the experiment. The measurement reveals that the mean flow in the central region of the convection cell is of the shape of a coherent elliptical rotating core for Ra below 1 x 10(10). Above this Ra, the orientation of the elliptical core changes by a 90 degrees angle and an inner core rotating at a lower rate inside the original bulk core emerges. It is further found that the rotation frequencies of the inner core and the outer shell have distinct scalings with Ra; the scaling exponent for the outer-shell is 0.5 and it is 0.4 for the inner core. From the measured rms and skewness distributions of the velocity field, we find that velocity fluctuations at the cell center are neither homogeneous nor isotropic. The turbulent energy production fields further reveal that the mean wind is not driven by turbulent fluctuations associated with Reynolds stress.

摘要

利用粒子图像测速技术测量了水中湍流瑞利 - 贝纳德对流中速度场的空间结构,瑞利数Ra从9×10⁸变化到9×10¹¹,普朗特数保持近似恒定(Pr约为4)。该研究直接证实了在实验中达到的最高Ra值下确实存在旋转平均风。测量结果表明,对于Ra低于1×10¹⁰的情况,对流单元中心区域的平均流呈相干椭圆旋转核心的形状。高于此Ra值时,椭圆核心的方向改变90度角,并且在原始大核心内部出现一个以较低速率旋转的内核。进一步发现,内核和外壳的旋转频率与Ra具有不同的标度关系;外壳的标度指数为0.5,内核为0.4。从测量的速度场均方根和偏度分布中,我们发现单元中心处的速度波动既非均匀也非各向同性。湍流能量产生场进一步表明,平均风不是由与雷诺应力相关的湍流波动驱动的。

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