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Measurement of velocity profiles in a rectangular microchannel with aspect ratio α = 0.35

机译:在纵横比为α= 0.35的矩形微通道中测量速度分布

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摘要

In this work, we measured 14 horizontal velocity profiles along the vertical direction of a rectangular microchannel with aspect ratio α = h/w = 0.35 (h is the height of the channel and w is the width of the channel) using microPIV at Re = 1.8 and 3.6. The experimental velocity profiles are compared with the full 3D theoretical solution, and also with a Poiseuille parabolic profile. It is shown that the experimental velocity profiles in the horizontal and vertical planes are in agreement with the theoretical profiles, except for the planes close to the wall. The discrepancies between the experimental data and 3D theoretical results in the center vertical plane are less than 3.6%. But the deviations between experimental data and Poiseuille’s results approaches 5%. It indicates that 2D Poiseuille profile is no longer a perfect theoretical approximation since α = 0.35. The experiments also reveal that, very near the hydrophilic wall (z = 0.5–1 μm), the measured velocities are significantly larger than the theoretical velocity based on the no-slip assumption. A proper discussion on some physical effects influencing the near wall velocity measurement is given.
机译:在这项工作中,我们在Re =时使用microPIV在矩形微通道的垂直方向上测量了14个水平速度曲线,其纵横比α= h / w = 0.35(h是通道的高度,w是通道的宽度)。 1.8和3.6。将实验速度轮廓与完整的3D理论解以及Poiseuille抛物线轮廓进行比较。结果表明,水平和垂直平面上的实验速度分布与理论分布一致,除了靠近墙的平面。在中心垂直平面上,实验数据与3D理论结果之间的差异小于3.6%。但是实验数据和Poiseuille结果之间的偏差接近5%。这表明由于α= 0.35,二维Poiseuille轮廓不再是理想的理论近似值。实验还表明,在亲水壁附近(z = 0.5-1μm),测得的速度明显大于基于无滑移假设的理论速度。适当讨论了一些影响近壁速度测量的物理效应。

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  • 来源
    《Experiments in Fluids》 |2008年第6期|951-959|共9页
  • 作者

    Xu Zheng; Zhan-hua Silber-Li;

  • 作者单位

    LNM Institute of Mechanics Chinese Academy of Sciences 100080 Beijing China;

    LNM Institute of Mechanics Chinese Academy of Sciences 100080 Beijing China;

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  • 原文格式 PDF
  • 正文语种 eng
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