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Scale-dependent cyclone-anticyclone asymmetry in a forced rotating turbulence experiment

机译:强迫旋转湍流实验中与尺度有关的旋风除尘器不对称

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We characterize the statistical and geometrical properties of the cyclone-anticyclone asymmetry in a statistically steady forced rotating turbulence experiment. Turbulence is generated by a set of vertical flaps which continuously inject velocity fluctuations towards the center of a tank mounted on a rotating platform.We first characterize the cyclone-anticyclone asymmetry from conventional single-point vorticity statistics. We propose a phenomenological model to explain the emergence of the asymmetry in the experiment, from which we predict scaling laws for the root-mean-square velocity in good agreement with the experimental data. We further quantify the cycloneanticyclone asymmetry using a set of third-order two-point velocity correlations. We focus on the correlations which are nonzero only if the cyclone-anticyclone symmetry is broken. They offer two advantages over single-point vorticity statistics: first, they are defined from velocity measurements only, so an accurate resolution of the Kolmogorov scale is not required; second, they provide information on the scaledependence of the cyclone-anticyclone asymmetry. We compute these correlation functions analytically for a random distribution of independent identical vortices. These model correlations describe well the experimental ones, indicating that the cyclone-anticyclone asymmetry is dominated by the large-scale long-lived cyclones.
机译:我们在统计稳定的强迫旋转湍流实验中表征了旋风-反气旋不对称的统计和几何性质。湍流是由一组垂直襟翼产生的,该襟翼向安装在旋转平台上的储罐的中心连续注入速度波动。首先,我们从常规单点涡度统计数据表征旋风分离器-反旋风分离器的不对称性。我们提出了一种现象学模型来解释实验中不对称现象的出现,据此我们可以预测均方根速度的缩放定律与实验数据吻合良好。我们进一步使用一组三阶两点速度相关性来量化气旋反气旋的不对称性。仅当旋风-反气旋对称性破坏时,我们才关注非零的相关性。与单点涡度统计相比,它们具有两个优点:首先,仅从速度测量中定义它们,因此不需要Kolmogorov标度的准确分辨率;其次,它们提供了旋风分离器-反气旋不对称性的尺度依赖性信息。我们分析地计算这些相关函数,以获得独立的相同涡旋的随机分布。这些模型相关性很好地描述了实验相关性,表明旋风分离器与反旋风分离器的不对称性主要由大型长寿命旋风分离器控制。

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