High-resolution three-color PIV technique using a digital SLR camera

被引:0
|
作者
Funatani, Shumpei [1 ]
Takeda, Tetsuaki [1 ]
Toriyama, Koji [1 ]
机构
[1] Graduate School of Medicine and Engineering, University of Yamanashi, Takeda 4-3-11, Kofu,Yamanashi,400-8511, Japan
基金
日本学术振兴会;
关键词
Flow of fluids - Velocimeters - Velocity measurement - Air - Cameras - Heat transfer - Velocity - Velocity distribution;
D O I
10.1615/JFlowVisImageProc.2014010412
中图分类号
学科分类号
摘要
Particle image velocimetry (PIV) is used for measuring velocity distributions in planar cross sections of a fluid flow. The PIV technique is nonintrusive and not affected by variations in the fluid temperature. However, the velocity range and the accuracy of measurement are dependent on the spatial resolution of the camera. To overcome this limitation, a color digital single-lens reflex (SLR) camera and three illumination colors were used to simultaneously obtain two pairs of time delays. The three illumination colors, namely, red, green, and blue, were generated by diode lasers and had wavelengths of 650, 532, and 445 nm, respectively. Visualization images were obtained by a color digital SLR camera with color (red, green, and blue) pixel image grids. The uncertainty of the three-color PIV technique was evaluated using standard PIV images, and the technique was used to investigate the heat transfer and fluid flow characteristics of the natural convection produced by a vertical grooved panel heated on one side. The new color PIV technique was also used to measure a 3D velocity field by deforming the shape of the light sheet. The results confirmed the feasibility of using multiple cameras to develop a high-resolution 3D PIV system. © 2013 by Begell House, Inc.
引用
收藏
页码:35 / 45
相关论文
共 50 条
  • [31] High resolution digital EO color camera VOS 60 for open skies
    Uhl, B
    AIRBORNE RECONNAISSANCE XX, 1996, 2829 : 291 - 302
  • [32] Measurement of a velocity field in microvessels using a high resolution PIV technique
    Sugii, Y
    Nishio, S
    Okamoto, K
    VISUALIZATION AND IMAGING IN TRANSPORT PHENOMENA, 2002, 972 : 331 - 336
  • [33] High-resolution melt pool thermal imaging for metals additive manufacturing using the two-color method with a color camera
    Myers, Alexander J.
    Quirarte, Guadalupe
    Ogoke, Francis
    Lane, Brandon M.
    Uddin, Syed Zia
    Farimani, Amir Barati
    Beuth, Jack L.
    Malen, Jonathan A.
    ADDITIVE MANUFACTURING, 2023, 73
  • [34] Head/tape spacing measurements for digital linear tape drives using three-color interferometry
    Tan, Sanwu
    Garrettson, Brook
    Talke, Frank E.
    Kneeburg, Dave
    Judge, John
    Tribology Transactions, 2000, 43 (01): : 144 - 150
  • [35] Digital Micromirror Device Camera Used for High-Speed and High-Resolution Imaging
    Feng, Wei
    Zhang, Fumin
    Qu, Xinghua
    2016 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2016,
  • [36] Mechanical behavior study of laminate composite by three-color digital holography
    Karray, M.
    Poilane, C.
    Gargouri, M.
    Picart, P.
    JOURNAL OF THE EUROPEAN OPTICAL SOCIETY-RAPID PUBLICATIONS, 2017, 13
  • [37] Digital three-dimensional atlas of quail development using high-resolution MRI
    Ruffins, Seth W.
    Martin, Melanie
    Keough, Lindsey
    Truong, Salina
    Fraser, Scott E.
    Jacobs, Russell E.
    Lansford, Rusty
    THESCIENTIFICWORLDJOURNAL, 2007, 7 : 592 - 604
  • [38] A HIGH-RESOLUTION COLOR MONITOR
    HANLON, M
    MOYER, GG
    WINNINGHOFF, PG
    HEWLETT-PACKARD JOURNAL, 1983, 34 (09): : 18 - 21
  • [39] Simultaneous PIV–LIF measurements using RuPhen and a color camera
    Jiggar Shah
    Claudio Mucignat
    Ivan Lunati
    Thomas Rösgen
    Experiments in Fluids, 2024, 65
  • [40] Contactless Material Tensile Testing Using a High-Resolution Camera
    Bulava, Jaroslav
    Hargas, Libor
    Koniar, Dusan
    COMPUTATION, 2022, 10 (07)