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Feasibility and Uncertainties Associated with Two-Angle Imaging of Sprays: A Focus on 3D Velocity Measurements

机译:与喷雾两角成像相关的可行性和不确定性:专注于3D速度测量

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Backlight imaging is a standard experimental technique used for the measurement of liquid fragment size and velocity in multiphase flows. When used with appropriate microscope lenses, quantitative information on the spray structure can be attained, including measurement of non-spherical objects. A critical issue resides in the nature of the measurement which is line integrated from a single viewing angle. This fundamental limitation makes it impossible to resolve three dimensional information from the images. This paper presents the use of a pair of high speed cameras and long working distance microscopes oriented at 90 degrees to each-other, and synchronized to two high speed diode lasers. By assuming a particular fragment consists of multiple threedimensional ellipsoids, an approximate fragment volume and velocity can be derived. Mono-dispersed drops generated by different syringe sizes along with micro-polyspheres are used as calibration tools to examine the feasibility of combined volume and velocity measurement from two viewing angles. The results reported in this work focus on velocity measurements which yield an uncertainty of up to 15% when compared to theory.
机译:背光成像是一种标准实验技术,用于测量多相流动中的液体片段尺寸和速度。当与适当的显微镜镜片一起使用时,可以获得有关喷雾结构的定量信息,包括非球形物体的测量。临界问题驻留在测量的性质中,其是从单个视角集成的线。这种基本限制使得无法从图像中解析三维信息。本文介绍了一对高速摄像机和长期工作距离显微镜,以90度以相互定向,并同步到两个高速二极管激光器。通过假设特定的片段由多个三维椭圆体组成,可以导出近似片段体积和速度。由不同注射器尺寸的单分散液体以及微多电阻的尺寸用作校准工具,以检查组合体积和速度测量的可行性,从两个观察角度测量。在这项工作中报告的结果侧重于速度测量,与理论相比,在与理论相比时产生高达15%的不确定性。

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