首页> 外文会议>10th International Symposium on Laser Techniques for Fluid Mechanics , Jul 10-13, 2000, Lisbon, Portugal >Instantaneous whole field measurement of velocity and size of air microbubbles in two-phase flows using DDPIV
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Instantaneous whole field measurement of velocity and size of air microbubbles in two-phase flows using DDPIV

机译:使用DDPIV瞬时全场测量两相流中空气微气泡的速度和大小

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Defocusing digital particle image velocimetry (DDPIV) is the natural extension of digital particle image velocimetry (DPIV), planar or quasi three-dimensional, to a true and unique three-dimensional PIV technique. This work presents the defocusing optical concept by which the depth information can be retrieved, thus overriding the limitation to in-plane measurements of actual PIV techniques, either standard or stereo-based. The concept is implemented into a three-dimensional imaging system specifically designed for the purpose of mapping two-phase bubbly flows. Digital images of the bubble field are recorded and analysed to provide information both on the physical location of every single particle/bubble and on its respective size, which is estimated from the scattered light intensity. The calculation of the true three-component velocity field is done by local spatial cross-correlation between two consecutive sets of particle/bubble locations. The spatial resolution and uncertainty limits are established based on a simplified model of the defocusing optical system. Accuracy measurements show that the average error on the displacements is about 0.02 pixels. The methodology used to measure the size is laid out by application of the Mie scattering theory. A DDPIV prototype instrument was fabricated on specific requirements. The instrument records high resolution images of the bubble field and is capable of providing bubble size and bubble location within a cubic foot volume. The technique is applied to the study of the dynamics of sub-millimeter air bubbles in a three-dimensional vortical flow generated by a propeller. Velocity, bubble size distribution and void fraction for these flows are discussed.
机译:散焦数字粒子图像测速技术(DDPIV)是数字粒子图像测速技术(DPIV)(平面或准三维)的自然延伸,是真正独特的三维PIV技术。这项工作提出了散焦光学概念,通过它可以检索深度信息,从而克服了对实际PIV技术(基于标准或基于立体声)的面内测量的限制。该概念被实施到三维成像系统中,该系统专门设计用于映射两相气泡流。记录并分析气泡场的数字图像,以提供有关每个单个粒子/气泡的物理位置及其相应大小的信息,这些信息是根据散射光强度估算的。真实的三分量速度场的计算是通过两个连续的粒子/气泡位置集之间的局部空间互相关来完成的。基于散焦光学系统的简化模型建立空间分辨率和不确定性极限。精度测量表明,位移的平均误差约为0.02像素。用于测量尺寸的方法是通过应用Mie散射理论设计的。 DDPIV原型仪器是根据特定要求制造的。该仪器记录了气泡场的高分辨率图像,并能够提供立方英尺体积内的气泡大小和气泡位置。该技术被用于研究螺旋桨产生的三维涡流中亚毫米气泡的动力学。讨论了这些流动的速度,气泡大小分布和空隙率。

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