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Effect of particle number density in in-line digital holographic particle velocimetry

机译:在线数字全息粒子测速仪中粒子数密度的影响

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A digital in-line holographic particle tracking velocimetry (HPTV) system was developed to measure 3D (three-dimensional) velocity fields of turbulent flows. The digital HPTV (DHPTV) procedure consists of four steps: recording, numerical reconstruction, particle extraction and velocity extraction. In the recording step, a digital CCD camera was used as a recording device. Holograms contained many unwanted images or noise. To get clean holograms, digital image processing techniques were adopted. In the velocity extraction routine, we improved the HPTV algorithm to extract 3D displacement information of tracer particles. In general, the results obtained using HPTV were not fully acceptable due to technical limitations such as low spatial resolution, small volume size, and low numerical aperture (NA). The problems of spatial resolution and NA are closely related with a recording device. As one experimental parameter that can be optimized, we focused on the particle number density. Variation of the reconstruction efficiency and recovery ratio were compared quantitatively with varying particle number density to check performance of the developed in-line DHPTV system. The reconstruction efficiency represented the particle number distribution acquired through the numerical reconstruction procedure. In addition the recovery ratio showed the performance of 3D PTV algorithm employed for DHPTV measurements. The particle number density in the range of C o = 13–17 particles/mm3 was found to be optimum for the DHPTV system tested in this study.
机译:开发了一种数字在线全息粒子跟踪测速系统(HPTV),以测量湍流的3D(三维)速度场。数字HPTV(DHPTV)过程包括四个步骤:记录,数值重建,粒子提取和速度提取。在记录步骤中,将数字CCD照相机用作记录装置。全息图包含许多不需要的图像或噪点。为了获得干净的全息图,采用了数字图像处理技术。在速度提取例程中,我们改进了HPTV算法,以提取示踪粒子的3D位移信息。通常,由于技术限制,例如低空间分辨率,小体积尺寸和低数值孔径(NA),使用HPTV获得的结果不能完全接受。空间分辨率和NA的问题与记录设备密切相关。作为可以优化的一项实验参数,我们集中于颗粒数密度。将重建效率和回收率的变化与变化的粒子数密度进行定量比较,以检查已开发的在线DHPTV系统的性能。重构效率表示通过数值重构程序获得的粒子数分布。另外,回收率显示了用于DHPTV测量的3D PTV算法的性能。对于本研究中测试的DHPTV系统,发现在C o = 13-17个粒子/ mm3 范围内的粒子数密度是最佳的。

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  • 来源
    《Experiments in Fluids》 |2008年第4期|623-631|共9页
  • 作者

    Seok Kim; Sang Joon Lee;

  • 作者单位

    Department of Mechanical Engineering Pohang University of Science and Technlogy San 31 Hyoja Dong Pohang 790-784 South Korea;

    Department of Mechanical Engineering Pohang University of Science and Technlogy San 31 Hyoja Dong Pohang 790-784 South Korea;

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