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Digital image plane holography as a three-dimensional flow velocimetry technique

机译:数字图像平面全息术作为三维流速速度技术

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This paper shows the feasibility of applying digital image plane holography (DIPH) as a fluid velocimetry technique for simultaneous measurements of all three components of the velocity field. As a first approach DIPH has been set up to measure a single fluid plane. The recording apparatus is a digital speckle interferometer (DSPI) with spatial phase shifting (SPS). The speckle interferometer has an out-of-plane sensitivity and the off-axis reference beam produces a spatial modulation in the pattern (hologram) recorded by the CCD camera. From the interferometric and photographic analysis of the reconstructed object wave, the three velocity components in the fluid plane are obtained. The complex amplitude of the object wave is calculated by the application of a Fourier-transform method to the hologram. The phase change between two subsequent frames yields an out-of-plane component of the velocity field. The two in-plane components are obtained, as in digital speckle photography, by cross correlation of the reconstructed object wave's intensity. Some quantitative results in a Rayleigh-Benard convective flow are presented. In the final setup, angular multiplexing with coherence length control has been introduced in order to simultaneously measure the velocity fields in two fluid planes. Some preliminary results from the convective flow are presented.
机译:本文显示了将数字图像平面全息术(DIPH)作为流体速度技术应用,用于同时测量速度场的所有三个部件的流体速度技术。作为第一种方法,已经设置了DIPH以测量单个流体平面。记录装置是数字散斑干涉仪(DSPI),其空间移相移位(SPS)。散斑干涉仪具有外平面外灵敏度,偏离轴参考光束在CCD摄像机记录的图案(全息图)中产生空间调制。根据重建物体波的干涉测量和摄影分析,获得了流体平面中的三个速度分量。通过在全息图中施加傅里叶变换方法来计算物体波的复幅。两个后续帧之间的相变产生速度场的平面外分量。通过重建的物体波的强度的交叉相关来获得两个面内部件,如在数字斑点摄影中那样。呈现了瑞利奔驰对流流程的一些定量结果。在最终设置中,已经引入了具有相干长度控制的角度复用,以便同时测量两个流体平面中的速度场。提出了来自对流流程的一些初步结果。

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