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Visualization of convection patterns near an evaporating meniscus using μPIV

机译:使用μPIV可视化蒸发弯月面附近的对流模式

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摘要

Experimental visualizations of the three dimensional (3D) convection patterns generated near an evaporating meniscus in horizontally oriented capillary tubes are presented. These patterns are caused due to the differential evaporation along the meniscus. In this study, transparent capillary tubes with refractive index close to that of the evaporating liquid were used to minimize refraction effects and obtain velocity vectors near the walls. Polystyrene fluorescent particles of 0.5 μm diameter suspended in methanol were used to make the measurements in tubes of 75, 200 and 400 μm diameter. For the 75 μm tube, gravity was observed to have no effect on the flow patterns and an axisymmetric counter-rotating vortex pair was present along the horizontal and vertical center planes, suggesting the presence of a toroidal vortex near the meniscus. With an increase in tube size, buoyancy effects became apparent as the axisymmetric pattern broke down. A counter-rotating symmetric vortex pair was observed in the horizontal center plane, whereas in the vertical center plane, a single vortex dominated the flow and pushed the secondary vortex to a corner. Particle streak and μPIV images were obtained in multiple horizontal planes and a vertical center plane to understand this 3D flow behavior.
机译:呈现了在水平定向的毛细管中蒸发弯液面附近生成的三维(3D)对流模式的实验可视化。这些模式是由于沿弯液面的不同蒸发造成的。在这项研究中,使用折射率接近蒸发液体的透明毛细管来最大程度地减少折射影响并获得壁附近的速度矢量。使用悬浮在甲醇中的直径为0.5μm的聚苯乙烯荧光颗粒在直径为75、200和400μm的管中进行测量。对于75μm的管,观察到重力对流型没有影响,并且沿水平和垂直中心平面存在轴对称的反向旋转涡流对,表明在弯液面附近存在环形涡流。随着管尺寸的增加,随着轴对称图案的破裂,浮力作用变得明显。在水平中心平面中观察到反向旋转的对称涡流对,而在垂直中心平面中,单个涡流占主导地位,将次要涡流推向角落。在多个水平面和垂直中心平面中获得了颗粒条纹和μPIV图像,以了解此3D流动行为。

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  • 来源
    《Experiments in Fluids》 |2008年第3期|431-438|共8页
  • 作者单位

    Cooling Technologies Research Center School of Mechanical Engineering Purdue University West Lafayette IN 47907 USA;

    Cooling Technologies Research Center School of Mechanical Engineering Purdue University West Lafayette IN 47907 USA;

    Cooling Technologies Research Center School of Mechanical Engineering Purdue University West Lafayette IN 47907 USA;

    Cooling Technologies Research Center School of Mechanical Engineering Purdue University West Lafayette IN 47907 USA;

    Cooling Technologies Research Center School of Mechanical Engineering Purdue University West Lafayette IN 47907 USA;

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