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Simultaneous photobleaching molecular tagging velocimetry for density-stratified flows of suspensions

机译:用于密度分层悬浮液流量的同时光漂白分子标记测量法

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摘要

To gain insight into the roll wave instability in particulate flow systems, the spatiotemporal velocities of particle and liquid phases in a clear-fluid layer are simultaneously measured by means of a photobleaching molecular tagging velocimetry (PB-MTV). A grid pattern tag is generated by intermittent irradiation of two intense laser beams, which facilitates measurement of a wall vicinity flow induced by the Boycott effect. To cope with a plurality of tagline intersections, which largely deform in shear flows, a novel spatial correlation technique is developed with a template-matching method. A priori study using artificial images of tags in a temporally oscillating flow is performed to examine the effects of the signal to noise (S/N) ratio and the degree of unsteadiness on the accuracy of the velocimetry. An experimental validation of the present PB-MTV is also conducted on the statistical values of the streamwise velocity through comparison with a laser-induced fluorescence and particle tracking velocimetry (LIF-PTV). A series of experiments are carried out using a suspension, which consists of tap water and spherical hollow light particles, varying the particle diameter and the particle volume fraction. The liquid velocity fluctuation tends to increase with decrease in the inter-particle distance compared to the thickness of the clear-fluid layer. We conclude that the roll wave instability occurs only under the fluid-like condition, where the suspension behaves as a continuum, and is affected by the sharpness of flow stratification between the clear-fluid and particle-rich phases.
机译:为了深入了解颗粒状流动系统中的辊波不稳定性,通过光漂白分子标记速度(PB-MTV)同时测量透明流体层中的颗粒和液相的时空速度。通过两个强烈激光束的间歇照射产生网格图案标签,这有利于测量由抵制效果引起的壁附近流量。为了应对多个标记交叉点,其在很大程度上在剪切流中变形,具有模板匹配方法的新型空间相关技术。执行在时间上振荡流中使用标签的人造图像的先验研究,以检查信号与噪声(S / N)比的效果以及对速度精度的不稳定程度。通过与激光诱导的荧光和颗粒跟踪速度(LiF-PTV)的比较,还对本发明的PB-MTV的实验验证也在流动速度的统计值上进行。使用悬浮液进行一系列实验,该试验由自来水和球形中空光颗粒组成,改变粒径和颗粒体积分数。与透明流体层的厚度相比,液体速度波动随着颗粒间距离的降低而增加。我们得出结论,辊波不稳定性仅发生在流体状状态下,其中悬浮液表现为连续体,并且受透明流体和富含颗粒的相之间的流分层的清晰度的影响。

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