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近表面高速粒子图像测速技术

High-speed particle image velocimetry near surfaces.

作者信息

Lu Louise, Sick Volker

机构信息

Department of Mechanical Engineering, University of Michigan, MI, USA.

出版信息

J Vis Exp. 2013 Jun 24(76):50559. doi: 10.3791/50559.

Abstract

Multi-dimensional and transient flows play a key role in many areas of science, engineering, and health sciences but are often not well understood. The complex nature of these flows may be studied using particle image velocimetry (PIV), a laser-based imaging technique for optically accessible flows. Though many forms of PIV exist that extend the technique beyond the original planar two-component velocity measurement capabilities, the basic PIV system consists of a light source (laser), a camera, tracer particles, and analysis algorithms. The imaging and recording parameters, the light source, and the algorithms are adjusted to optimize the recording for the flow of interest and obtain valid velocity data. Common PIV investigations measure two-component velocities in a plane at a few frames per second. However, recent developments in instrumentation have facilitated high-frame rate (>1 kHz) measurements capable of resolving transient flows with high temporal resolution. Therefore, high-frame rate measurements have enabled investigations on the evolution of the structure and dynamics of highly transient flows. These investigations play a critical role in understanding the fundamental physics of complex flows. A detailed description for performing high-resolution, high-speed planar PIV to study a transient flow near the surface of a flat plate is presented here. Details for adjusting the parameter constraints such as image and recording properties, the laser sheet properties, and processing algorithms to adapt PIV for any flow of interest are included.

摘要

多维流动和瞬态流动在科学、工程和健康科学的许多领域中都起着关键作用,但人们对此往往了解不足。这些流动的复杂特性可以使用粒子图像测速技术(PIV)进行研究,这是一种用于光学可及流动的基于激光的成像技术。尽管存在多种形式的PIV,它们将该技术扩展到了原始平面双分量速度测量能力之外,但基本的PIV系统由光源(激光)、相机、示踪粒子和分析算法组成。对成像和记录参数、光源及算法进行调整,以优化针对感兴趣流动的记录,并获取有效的速度数据。常见的PIV研究以每秒几帧的速度测量平面内的双分量速度。然而,仪器设备的最新进展促进了高帧率(>1 kHz)测量,能够以高时间分辨率解析瞬态流动。因此,高帧率测量使得对高度瞬态流动的结构和动力学演化进行研究成为可能。这些研究在理解复杂流动的基本物理过程中起着关键作用。本文给出了执行高分辨率、高速平面PIV以研究平板表面附近瞬态流动的详细描述。其中还包括调整参数约束(如图像和记录特性、激光片特性以及处理算法)以使PIV适用于任何感兴趣流动的细节。

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