首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A COMPARISON OF 2-D MOLECULAR TAGGING VELOCIMETRY (MTV) AND MICRO PARTICLE IMAGE VELOCIMETRY (μPIV) FOR MICROSCALE FLOWS
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A COMPARISON OF 2-D MOLECULAR TAGGING VELOCIMETRY (MTV) AND MICRO PARTICLE IMAGE VELOCIMETRY (μPIV) FOR MICROSCALE FLOWS

机译:2-D分子标记速度(MTV)和微粒子图像速度(MTV)对微粒流动的比较

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A 2-D scanning molecular tagging velocimetry technique is presented. The described MTV technique utilizes a scanning laser system enabling two-dimensional flow velocity measurements. The laser scanning system allows the tagging of molecules seeded in the flow of any desired pattern. This array of small dot markers in the region of interest is visualized using an epi-fluorescent optical imaging system. The scanning system facilitates the convenient maneuvering of the laser beam allowing the tagging of either a single point or a pattern. The laser beam is focused onto a single point leading to a more efficient tagging process. A standard particle tracking velocimetry (PTV) approach is used to resolve the two components of the flow velocity. Results obtained show the capability of the designed system to tag a region in the centre of the field of view. The tagging laser will be moved to any desired location within the field of view to tag the desired region.
机译:提出了2-D扫描分子标记速度技术。所描述的MTV技术利用扫描激光系统,从而实现二维流速测量。激光扫描系统允许在任何所需图案的流动中播种的分子标记。使用EPI荧光光学成像系统可视化感兴趣区域中的该阵列的小点标记。扫描系统有助于方便地操纵激光束,允许标记单点或图案。激光束聚焦到导致更有效的标记过程的单点上。标准粒子跟踪速度(PTV)方法用于解析流速的两个部件。获得的结果显示了设计系统在视野中标记区域标记区域的能力。标记激光器将移动到视野中的任何所需位置以标记所需区域。

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