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Dual holographic interferometry for measuring the three velocity components in a fluid plane

机译:双全息干涉术,用于测量流体平面中的三个速度分量

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摘要

A technique that allows one to measure simultaneously the three velocity components in a fluid plane is presented. One obtains the quantitative information from only one holographic recording by combining two different reconstruction processes. As both processes use an interferometric comparison of two waves, we refer to this technique as dual holographic interferometry. The far-field fringe pattern that is obtained when reconstruction is made with an expanded laser beam allows one to determine the in-plane velocity components. The image-field fringe pattern that is obtained when a pointwise laser beam is used for reconstruction contains information about an out-of-plane velocity component. As the two reconstruction processes have different sensitivities, two different ways to combine them are proposed. The system has been demonstrated in a fluidlike solid object and in a convective flow.
机译:提出了一种允许同时测量流体平面中三个速度分量的技术。通过组合两种不同的重建过程,人们只能从一张全息记录中获得定量信息。由于这两个过程都使用两个波的干涉测量比较,因此我们将此技术称为双重全息干涉测量。当用扩展的激光束进行重建时获得的远场条纹图案可以确定面内速度分量。当使用逐点激光束进行重建时获得的像场条纹图案包含有关平面外速度分量的信息。由于两种重建过程具有不同的敏感性,因此提出了两种不同的组合方法。该系统已在类似流体的固体物体和对流中得到证明。

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