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NEAR-SURFACE VELOCIMETRY USING EVANESCENT WAVE ILLUMINATION

机译:隐伏波照明的近表面速度

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摘要

Total internal reflection fluorescent microscopy (TIRFM) is used to measure particle motion in the near wall region of a microfluidic system. TIRFM images have minimum background noise and contain only particles that are very close to channel surface, where slip velocities may be present. Sub-micron sized fluorescent particles suspended in water are used as seed particles and their images are analyzed with a PTV algorithm to extract information about apparent slip velocity. At relatively low shear rates (less than 2500 sec~(-1)), an apparent slip velocity, proportional to the shear rate was observed. However, numerical simulations show that this observation is a direct consequence of the small, but finite thickness of the illuminated region, and most likely not due to physical slip at the surface. The statistical difference in apparent slip velocities measured over hydrophilic and hydrophobic surfaces is found to be minimal. Issues associated with the experimental technique and the interpretation of the experimental results are also discussed.
机译:全内反射荧光显微镜(TIRFM)用于测量微流体系统近壁区域中的粒子运动。 TIRFM图像具有最小的背景噪声,并且仅包含非常靠近通道表面(可能存在滑动速度)的颗粒。悬浮在水中的亚微米级荧光颗粒用作种子颗粒,并通过PTV算法分析其图像以提取有关表观滑移速度的信息。在较低的剪切速率下(小于2500 sec〜(-1)),观察到与剪切速率成比例的表观滑动速度。但是,数值模拟表明,这种观察结果是照明区域的厚度小但有限的直接结果,并且很可能不是由于表面的物理滑移。发现在亲水和疏水表面上测得的表观滑动速度的统计差异最小。还讨论了与实验技术和实验结果的解释有关的问题。

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