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Defocusing digital particle image velocimetry and the three-dimensional characterization of two-phase flows

机译:散焦数字粒子图像测速和两相流的三维表征

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摘要

Defocusing digital particle image velocimetry (DDPIV) is the natural extension of planar PIV techniques to the third spatial dimension. In this paper we give details of the defocusing optical concept by which scalar and vector information can be retrieved within large volumes. The optical model and computational procedures are presented with the specific purpose of mapping the number density, the size distribution, the associated local void fraction and the velocity of bubbles or particles in two-phase flows. Every particle or bubble is characterized in terms of size and of spatial coordinates, used to compute a true three-component velocity field by spatial three-dimensional cross-correlation. The spatial resolution and uncertainty limits are established through numerical simulations. The performance of the DDPIV technique is established in terms of number density and void fraction. Finally, the velocity evaluation methodology, using the spatial cross-correlation technique, is described and discussed in terms of velocity accuracy.
机译:散焦数字粒子图像测速技术(DDPIV)是平面PIV技术向第三空间维度的自然延伸。在本文中,我们给出了散焦光学概念的详细信息,通过该概念可以在大体积中检索标量和矢量信息。提出了光学模型和计算程序,其特定目的是绘制两相流中的数密度,尺寸分布,相关的局部空隙率以及气泡或颗粒的速度。每个粒子或气泡的特征都是大小和空间坐标,用于通过空间三维互相关来计算真正的三分量速度场。通过数值模拟确定空间分辨率和不确定性极限。 DDPIV技术的性能取决于数量密度和空隙率。最后,根据速度精度描述和讨论了使用空间互相关技术的速度评估方法。

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  • 作者单位
  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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