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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Granular shear flow dynamics and forces: Experiment and continuum theory - art. no. 011307
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Granular shear flow dynamics and forces: Experiment and continuum theory - art. no. 011307

机译:颗粒剪切流动力学和力:实验和连续理论-艺术。没有。 011307

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摘要

We analyze the main features of granular shear flow through experimental measurements in a Couette geometry and a comparison to a locally Newtonian, continuum model of granular flow. The model is based on earlier hydrodynamic models, adjusted to take into account the experimentally observed coupling between fluctuations in particle motion and mean-flow properties. Experimentally, the local Velocity fluctuations are found to decrease more slowly with distance from the shear surface than the velocity. This can be explained by an effective viscosity that diverges more rapidly as the random-close-packing density is approached than is predicted by Enskog theory for dense hard-sphere systems. Experiment and theory are in good agreement, especially for the following key features of granular flow: The flow is confined to a small shear band, fluctuations decay approximately exponentially away from the sheared wall, and the shear stress is approximately independent of the shear velocity. The functional forms of the velocity and fluctuation profiles predicted by the model agree with the experimental results. [References: 49]
机译:我们通过在库埃特(Couette)几何形状中进行实验测量并与局部牛顿连续流模型进行比较,分析了颗粒剪切流的主要特征。该模型基于较早的水动力模型,并进行了调整,以考虑到实验中观察到的颗粒运动波动与平均流量特性之间的耦合。实验上,发现局部速度波动与剪切表面的距离的减小比速度的减小更为缓慢。这可以通过有效粘度来解释,当接近随机密堆积密度时,有效粘度会比Enskog理论预测的稠密硬球系统更快地散开。实验和理论完全吻合,特别是对于颗粒流的以下关键特征:流动被限制在一个小的剪切带中,波动从剪切壁上以指数形式衰减,并且剪切应力与剪切速度近似无关。该模型预测的速度和波动曲线的功能形式与实验结果吻合。 [参考:49]

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