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Measurement of Viscoelastic Fluid Flow in the Curved Microchannel Using Digital Holographic Microscope and Polarized Camera

机译:使用数字全息显微镜和偏振相机测量弯曲微通道中的粘弹性流体流动

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摘要

This paper aims to develop a three-dimensional (3D) measurement approach to investigate the flow structures of viscoelastic fluid in the curved microchannel by using digital holographic microscope (DHM). The measurement system uses off-axis holographic/interferometric optical setup for the moving target, and the real-time three-dimensional-three-components (3D3C) particle tracking velocimetry (PTV) can be achieved based on the analysis of phase information of holograms. To diagnose the irregular flow inside the microchannel, the 3D temporal positions of tracer particles in the volume of 282 mu m x 282 mu m x 60 mu m have been detected and velocity field was calculated based on the PTV algorithm. Moreover, to explain the flow field inside the curved microchannel, for the first time the polarized high-speed camera was utilized to identify the strong elongation in the viscoelastic fluid. The DHM is proven to be successful for the measurements of microfluidic flow, especially for the truly real-time 3D motions.
机译:本文旨在开发一种三维(3D)测量方法,以通过使用数字全息显微镜(DHM)研究弯曲微通道中的粘弹性流体的流动结构。该测量系统将离轴全息/干涉光学装置用于移动目标,并且基于全息图的相位信息分析,可以实现实时三维三分量(3D3C)粒子跟踪测速(PTV) 。为了诊断微通道内部的不规则流动,已检测到示踪剂颗粒在282μmx282μmx60μm体积中的3D时间位置,并基于PTV算法计算了速度场。此外,为解释弯曲微通道内部的流场,第一次使用了偏振高速相机来识别粘弹性流体中的强伸长率。 DHM已被证明在微流测量中是成功的,特别是对于真正的实时3D运动。

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