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Conduction and dissipation in the shearing flow of granular materials modeled as non-Newtonian fluids

机译:非牛顿流体模拟的颗粒材料剪切流中的传导和耗散

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摘要

After providing a brief review of the constitutive modeling of the stress tensor for granular materials using non-Newtonian fluid models, we study the flow between two horizontal flat plates. It is assumed that the granular media behaves as a non-Newtonian fluid (of the Reiner–Rivlin type); we use the constitutive relation derived by Rajagopal and Massoudi [Rajagopal, K. R. and M. Massoudi, “A Method for measuring material moduli of granular materials: flow in an orthogonal rheometer,” Topical Report, DOE/PETC/TR-90/3, 1990] which can predict the normal stress differences. The lower plate is fixed and heated, and the upper plate (which is at a lower temperature than the lower plate) is set into motion with a constant velocity. The steady fully developed flow and the heat transfer equations are made dimensionless and are solved numerically; the effects of different dimensionless numbers and viscous dissipation are discussed.
机译:在简要回顾了使用非牛顿流体模型的粒状材料应力张量的本构模型后,我们研究了两个水平平板之间的流动。假定粒状介质的行为类似于非牛顿流体(Reiner-Rivlin类型)。我们使用Rajagopal和Massoudi [Rajagopal,KR和M. Massoudi提出的本构关系,“一种测量颗粒材料的材料模量的方法:在正交流变仪中的流动”,专题报告,DOE / PETC / TR-90 / 3, [1990]可以预测法向应力差异。固定并加热下板,并使上板(温度低于下板的温度)以恒定速度运动。使稳态充分发展的流动和传热方程式无因次,并用数值方法求解。讨论了不同无因次数和粘性耗散的影响。

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