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Influence of Interstitial Fluid Viscosity on TransportPhenomenon in Sheared Granular Materials

机译:间隙流体粘度对剪切粒状物质转运前霉素的影响

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We report experimental measurements of transport properties on sheared granular materials with different interstitial fluids to study the granular flow behaviors. Four kinds of interstitial fluids are used in the experiments. The ensemble velocities, local shear rates, fluctuation velocities, and self-diffusion coefficients are successfully measured by PTV method. The results indicate that the interstitial fluid plays an important role in determining the transport properties of the granular flow. The particles motions are more random and interactive collisions are more serious in a dry system (interstitial fluid of air). The values of fluctuations are smaller as the interstitial fluid is more viscous resulting in the larger viscous drag force. The thickness of shear band is about three to eight particle diameters and increases with the decreasing of the interstitial fluid viscosity. The self-diffusion coefficient of granular materials is also discussed in this study.
机译:我们向不同间质性流体报告剪切颗粒材料上运输性能的实验测量,以研究粒状流动。实验中使用了四种间质性液体。通过PTV方法成功地测量了集合速度,局部剪切速率,波动速度和自扩散系数。结果表明,间质液在确定粒状流动的运输性质方面发挥着重要作用。颗粒运动更随机,在干燥系统(空气间质液体)中更严重的互动碰撞。随着间质液更粘稠的导致较大的粘性阻力,波动的值较小。剪切带的厚度约为三到八个粒径,随着间质液粘度的降低而增加。本研究还讨论了粒状材料的自扩散系数。

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