Ryabtsev A, Pouya S, Safaripour A, Koochesfahani M, Dantus M
Opt Express. 2016 May 30;24(11):11762-7. doi: 10.1364/OE.24.011762.
Vorticity is one of the most important dynamic flow variables and is fundamental to the basic flow physics of many areas of fluid dynamics, including aerodynamics, turbulent flows and chaotic motion. We report on the direct measurements of fluid flow vorticity using a beam with orbital angular momentum that takes advantage of the rotational Doppler shift from microparticles intersecting the beam focus. Experiments are carried out on fluid flows with well-characterized vorticity and the experimental results are found to be in excellent agreement with the expected values. This method allows for localized real-time determination of vorticity in a fluid flow with three-dimensional resolution.
涡度是最重要的动态流动变量之一,对于流体动力学许多领域的基本流动物理特性至关重要,包括空气动力学、湍流和混沌运动。我们报告了使用具有轨道角动量的光束对流体流动涡度进行的直接测量,该光束利用了与光束焦点相交的微粒的旋转多普勒频移。对具有特征明确的涡度的流体流动进行了实验,实验结果与预期值非常吻合。该方法能够以三维分辨率对流体流动中的涡度进行局部实时测定。