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用于湍流应用的三维粒子跟踪测速法:射流流动案例

Three-dimensional Particle Tracking Velocimetry for Turbulence Applications: Case of a Jet Flow.

作者信息

Kim Jin-Tae, Kim David, Liberzon Alex, Chamorro Leonardo P

机构信息

Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign.

School of Mechanical Engineering, Tel Aviv University.

出版信息

J Vis Exp. 2016 Feb 27(108):53745. doi: 10.3791/53745.

Abstract

3D-PTV is a quantitative flow measurement technique that aims to track the Lagrangian paths of a set of particles in three dimensions using stereoscopic recording of image sequences. The basic components, features, constraints and optimization tips of a 3D-PTV topology consisting of a high-speed camera with a four-view splitter are described and discussed in this article. The technique is applied to the intermediate flow field (5 <x/d <25) of a circular jet at Re ≈ 7,000. Lagrangian flow features and turbulence quantities in an Eulerian frame are estimated around ten diameters downstream of the jet origin and at various radial distances from the jet core. Lagrangian properties include trajectory, velocity and acceleration of selected particles as well as curvature of the flow path, which are obtained from the Frenet-Serret equation. Estimation of the 3D velocity and turbulence fields around the jet core axis at a cross-plane located at ten diameters downstream of the jet is compared with literature, and the power spectrum of the large-scale streamwise velocity motions is obtained at various radial distances from the jet core.

摘要

三维粒子图像测速技术(3D-PTV)是一种定量流动测量技术,旨在通过对图像序列进行立体记录,在三维空间中追踪一组粒子的拉格朗日轨迹。本文描述并讨论了由带四视图分离器的高速相机组成的三维粒子图像测速技术拓扑结构的基本组件、特征、约束条件和优化技巧。该技术应用于雷诺数约为7000的圆形射流的中间流场(5 <x/d <25)。在射流源下游约十个直径处以及距射流核心不同径向距离处,估计欧拉坐标系中的拉格朗日流动特征和湍流量。拉格朗日特性包括选定粒子的轨迹、速度和加速度以及流动路径的曲率,这些都是从弗雷内-塞雷公式中获得的。将射流下游十个直径处的横截面上射流核心轴周围的三维速度场和湍流场估计值与文献进行了比较,并在距射流核心不同径向距离处获得了大尺度流向速度运动的功率谱。

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