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Extreme-value statistics from Lagrangian convex hull analysis for homogeneous turbulent Boussinesq convection and MHD convection

机译:拉格朗日凸包分析的极值统计,用于均匀湍流Bussinesq对流和MHD对流

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Download video View all New J. Phys. video abstracts We investigate the utility of the convex hull of many Lagrangian tracers to analyze transport properties of turbulent flows with different anisotropy. In direct numerical simulations of statistically homogeneous and stationary Navier–Stokes turbulence, neutral fluid Boussinesq convection, and MHD Boussinesq convection a comparison with Lagrangian pair dispersion shows that convex hull statistics capture the asymptotic dispersive behavior of a large group of passive tracer particles. Moreover, convex hull analysis provides additional information on the sub-ensemble of tracers that on average disperse most efficiently in the form of extreme value statistics and flow anisotropy via the geometric properties of the convex hulls. We use the convex hull surface geometry to examine the anisotropy that occurs in turbulent convection. Applying extreme value theory, we show that the maximal square extensions of convex hull vertices are well described by a classic extreme value distribution, the Gumbel distribution. During turbulent convection, intermittent convective plumes grow and accelerate the dispersion of Lagrangian tracers. Convex hull analysis yields information that supplements standard Lagrangian analysis of coherent turbulent structures and their influence on the global statistics of the flow.
机译:下载视频查看全部New J. Phys。视频摘要我们研究了许多拉格朗日示踪剂的凸包在分析具有不同各向异性的湍流的输运特性方面的实用性。在对统计均匀和固定的Navier-Stokes湍流,中性流体Boussinesq对流和MHD Boussinesq对流进行的直接数值模拟中,与拉格朗日对色散比较,表明凸包统计信息捕获了一大组被动示踪剂粒子的渐近色散行为。此外,凸包分析还提供了有关示踪剂子集合的附加信息,这些信息平均通过凸包的几何特性以极值统计和流动各向异性的形式最有效地分散。我们使用凸包表面几何形状来检查湍流对流中发生的各向异性。应用极值理论,我们证明了凸包顶点的最大平方扩展可以通过经典的极值分布Gumbel分布很好地描述。在湍流对流期间,间歇性对流羽流生长并加速了拉格朗日示踪剂的扩散。凸包分析产生的信息补充了对相干湍流结构及其对流动的整体统计量的影响的标准拉格朗日分析。

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