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Characteristics of Hydrodynamically Focused Streams for Use in Microscale Particle Image Velocimetry (Micro-PIV)

机译:用于微尺度粒子图像测速(Micro-PIV)的流体动力学聚焦流的特征

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This paper presents the characteristics of hydrodynamically focused streams to be used in Microscale Particle Image Velocimetry (micro-PIV). The investigation was done by means of Confocal Laser Scanning Microscopy (CLSM) in channels of cross-sections 260 × 200 μm and 1040 × 800 μm, within the downstream velocities range from 0.1 to 2.5 cm/s. The formulation of a curvature of the sheet, its dependence on the side stream ratio, and the overall downstream velocity are discussed qualitatively and quantitatively. The results show that the curvature is highly dependent on the velocities of the system. Sheet characteristics such as curvature and observed sheet width variation become amplified with higher velocities. This leads to the conclusion that hydrodynamic focusing is promising as a selective seeding technique for use in micro-PIV up to velocities of few cm/s. However, the fact that this is the upper velocity range in microfluidics renders the SeS-PIV technique as a very suitable tool for complicated flows visualization.
机译:本文介绍了将用于微尺度粒子图像测速(micro-PIV)的流体动力学聚焦流的特性。该研究是通过共聚焦激光扫描显微镜(CLSM)在横截面260×200μm和1040×800μm的通道中进行的,下游速度范围为0.1至2.5 cm / s。定性和定量地讨论了板曲率的公式,其对侧流比的依赖性以及整个下游速度。结果表明,曲率高度依赖于系统的速度。诸如曲率和观察到的纸张宽度变化之类的纸张特性会以较高的速度放大。这得出结论,流体动力学聚焦有望作为一种选择性播种技术用于微PIV,速度可达几厘米/秒。但是,这是微流体中的最高速度范围,这一事实使SeS-PIV技术成为用于复杂流可视化的非常合适的工具。

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