...
首页> 外文期刊>Physical review, E >Structure of sheared and rotating turbulence: Multiscale statistics of Lagrangian and Eulerian accelerations and passive scalar dynamics
【24h】

Structure of sheared and rotating turbulence: Multiscale statistics of Lagrangian and Eulerian accelerations and passive scalar dynamics

机译:剪切和旋转湍流的结构:拉格朗日和欧拉加速度和被动标量动力学的多尺度统计

获取原文
获取原文并翻译 | 示例
           

摘要

The acceleration statistics of sheared and rotating homogeneous turbulence are studied using direct numerical simulation results. The statistical properties of Lagrangian and Eulerian accelerations are considered together with the influence of the rotation to shear ratio, as well as the scale dependence of their statistics. The probability density functions (pdfs) of both Lagrangian and Eulerian accelerations show a strong and similar dependence on the rotation to shear ratio. The variance and flatness of both accelerations are analyzed and the extreme values of the Eulerian acceleration are observed to be above those of the Lagrangian acceleration. For strong rotation it is observed that flatness yields values close to three, corresponding to Gaussian-like behavior, and for moderate and vanishing rotation the flatness increases. Furthermore, the Lagrangian and Eulerian accelerations are shown to be strongly correlated for strong rotation due to a reduced nonlinear term in this case. A wavelet-based scale-dependent analysis shows that the flatness of both Eulerian and Lagrangian accelerations increases as scale decreases, which provides evidence for intermittent behavior. For strong rotation the Eulerian acceleration is even more intermittent than the Lagrangian acceleration, while the opposite result is obtained for moderate rotation. Moreover, the dynamics of a passive scalar with gradient production in the direction of the mean velocity gradient is analyzed and the influence of the rotation to shear ratio is studied. Concerning the concentration of a passive scalar spread by the flow, the pdf of its Eulerian time rate of change presents higher extreme values than those of its Lagrangian time rate of change. This suggests that the Eulerian time rate of change of scalar concentration is mainly due to advection, while its Lagrangian counterpart is only due to gradient production and viscous dissipation.
机译:利用直接数值模拟结果研究了剪切和旋转均匀湍流的加速度统计。考虑了拉格朗日和欧拉加速度的统计特性,以及旋转剪切比的影响以及统计量的比例依赖性。拉格朗日加速度和欧拉加速度的概率密度函数(pdfs)对旋转剪切比显示出强烈且相似的依赖性。分析了两种加速度的方差和平坦度,观察到欧拉加速度的极值高于拉格朗日加速度的极值。对于强旋转,可以观察到平坦度产生的值接近于3,对应于类似高斯的行为;对于中等旋转和消失的旋转,平坦度会增加。此外,由于在这种情况下非线性项的减少,对于强旋转,拉格朗日加速度和欧拉加速度也显示出很强的相关性。基于小波的尺度相关分析表明,随着尺度的减小,欧拉加速度和拉格朗日加速度的平坦度都会增加,这为间歇行为提供了证据。对于强旋转,欧拉加速度甚至比拉格朗日加速度更间歇,而适度旋转则得到相反的结果。此外,分析了在平均速度梯度方向上产生梯度的无源标量的动力学,并研究了旋转与剪切比的影响。关于由流传播的被动标量的集中度,其欧拉时间变化率的pdf呈现比其拉格朗日时间变化率的pdf更高的极值。这表明标量浓度的欧拉时间变化率主要是由于平流,而拉格朗日对应的拉格朗日时间仅是由于梯度产生和粘性耗散。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号