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Three-component flow velocity measurements with stereoscopic picosecond laser electronic excitation tagging

机译:具有立体微观激光电子激发标记的三组分流速测量

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Nonintrusive three-component (3C) velocity measurements of free jet flows w ere conducted by stereoscopic picosecond laser electronic excitation tagging (S-PLEET) at 100 kHz. The fundamental frequency of the burst-mode laser at 1064 nm was focused to generate the PLEET signal in a free jet flow. A stereoscopic imaging system was used to capture the PLEET signals. The 3C centroids of the PLEET signal were determined by utilizing simultaneous images from two cameras placed at an angle. The temporal evolutions of the centroids were obtained and used to determine the instantaneous, time-resolved 3C velocities of the flows. The free jets with various inlet pressures of 10-40 bars exhausting into atmospheric pressure air (i.e., underexpanded free jet with large pressure ratios; Reynolds numbers from the jet ranged from 39,000 to 145,000) were measured by S-PLEET. Key 3C turbulent properties of the free jets, including instantaneous and mean velocities, were obtained with an instantaneous mea-surement uncertainty of about +/- 10 m/s, which is about 2% of the highest velocities measured. Computation of higher-order statistics including covariances related to turbulent kinetic energy and the Reynolds stress component was demonstrated. The 3C nonintrusive and unseeded velocimetry technique could provide a new tool for flow property measurements in ground test facilities; the measured high-frequency turbulence properties of free jet flows could be useful for turbulence modeling and validations. (C) 2021 Optical Society of America
机译:用立体皮秒激光电子激发标签(S-PLEET)在100kHz下对自由射流进行了非侵入式三分量(3C)速度测量。脉冲模式激光的基频在1064nm处聚焦,以在自由射流中产生PLEET信号。使用立体成像系统捕获PLEET信号。PLEET信号的3C质心是通过利用两台相机以一定角度放置的同时图像确定的。获得了质心的时间演化,并用于确定流动的瞬时时间分辨3C速度。S-PLEET测量了不同入口压力为10-40巴的自由射流(即大压力比的欠膨胀自由射流;射流的雷诺数范围为39000到145000)。获得了自由射流的关键3C湍流特性,包括瞬时和平均速度,瞬时测量不确定度约为+/-10 m/s,约为所测最高速度的2%。计算高阶统计量,包括与湍流动能和雷诺应力分量相关的协方差。3C非侵入式非种子测速技术可为地面试验设施中的流动特性测量提供新的工具;测得的自由射流高频湍流特性可用于湍流建模和验证。(2021)美国光学学会

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  • 来源
    《Applied optics 》 |2021年第15期| 共10页
  • 作者单位

    Univ Tennessee Dept Mech Aerosp &

    Biomed Engn Knoxville TN 37996 USA;

    Spectral Energies LLC 4065 Execut Dr Beavercreek OH 45430 USA;

    NASA Adv Measurements &

    Data Syst Langley Res Ctr Hampton VA 23681 USA;

    Univ Tennessee Dept Mech Aerosp &

    Biomed Engn Knoxville TN 37996 USA;

    Spectral Energies LLC 4065 Execut Dr Beavercreek OH 45430 USA;

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  • 正文语种 eng
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