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Viscosity Estimation of a Suspension with Rigid Spheres in Circular Microchannels Using Particle Tracking Velocimetry

机译:使用粒子跟踪测速法估算圆形微通道中刚性球体的悬浮液的粘度

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摘要

Suspension flows are ubiquitous in industry and nature. Therefore, it is important to understand the rheological properties of a suspension. The key to understanding the mechanism of suspension rheology is considering changes in its microstructure. It is difficult to evaluate the influence of change in the microstructure on the rheological properties affected by the macroscopic flow field for non-colloidal particles. In this study, we propose a new method to evaluate the changes in both the microstructure and rheological properties of a suspension using particle tracking velocimetry (PTV) and a power-law fluid model. Dilute suspension (0.38%) flows with fluorescent particles in a microchannel with a circular cross section were measured under low Reynolds number conditions ( ≈ 10 ). Furthermore, the distribution of suspended particles in the radial direction was obtained from the measured images. Based on the power-law index and dependence of relative viscosity on the shear rate, we observed that the non-Newtonian properties of the suspension showed shear-thinning. This method will be useful in revealing the relationship between microstructural changes in a suspension and its rheology.
机译:悬浮液在工业和自然界中无处不在。因此,重要的是要了解悬浮液的流变性。理解悬浮流变学机理的关键是考虑其微观结构的变化。对于非胶体颗粒,很难评估微观结构变化对宏观流场影响的流变性能的影响。在这项研究中,我们提出了一种使用粒子跟踪测速(PTV)和幂律流体模型评估悬浮液的微观结构和流变性质变化的新方法。在低雷诺数条件下(≈10)测量了具有圆形横截面的微通道中荧光颗粒的稀释悬浮液(0.38%)的流动。此外,从测量的图像获得了悬浮颗粒在径向上的分布。基于幂律指数和相对粘度对剪切速率的依赖性,我们观察到悬浮液的非牛顿性质表现出剪切稀化。该方法将有助于揭示悬浮液的微观结构变化与其流变性之间的关系。

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