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首页> 外文期刊>International Journal of Multiphase Flow >Simulated configurational temperature of particles and a model of constitutive relations of rapid-intermediate-dense granular flow based on generalized granular temperature
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Simulated configurational temperature of particles and a model of constitutive relations of rapid-intermediate-dense granular flow based on generalized granular temperature

机译:基于广义颗粒温度的颗粒颗粒颗粒和快速中间致密粒度粒度模型

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摘要

In gas-solid flat-base spout bed with a jet, the flow of particles must go through an intermediate regime where both kinetic/collisional and frictional contributions play a role. In this paper, the statistical framework is proposed to define the generalized granular temperature which sums up the configurational temperature and translational granular temperature. The configurational temperature, translational and rotational granular temperatures of particles are simulated by means of CFD-DEM (discrete element method) in a 3D flat-base spout bed with a jet. The configurational temperatures of particles are calculated from instantaneous overlaps of particles. The translational and rotational granular temperatures of particles are calculated from instantaneous translational and angular velocities of particles. Roughly, the simulated translational and rotational granular temperatures increase, reach maximum, and then decrease with the increase of solids volume fractions. However, the configurational temperature increases with the increase of solids volume fractions. At high solid volume fraction, the predicted configurational temperatures are larger than the translational and rotational granular temperatures, indicating that the rate of energy dissipation do contributes by contact deformation of elastic particles. The generalized granular temperature is proposed to show the relation between the variance of the fluctuation velocity of deformation and the variance of the translational fluctuation velocity of particles. The constitutive relations of particle pressure, viscosity, granular conductivity of fluctuating energy and energy dissipation in rapid-intermediate-dense granular flows are correlated to the generalized granular temperature. The variations of particle pressure, shear viscosity, energy dissipation and granular conductivity are analyzed on the basis of generalized granular temperature in a flat-base spout bed with a jet. The axial velocities of particles predicted by a gas-solid two-fluid model of rapid-intermediate-dense granular flows agree with experimental results in a spout bed. (C) 2015 Elsevier B.V. All rights reserved.
机译:在带有喷射的气体固体平底喷口床上,粒子的流动必须通过中间体制度,其中动力学/碰撞和摩擦贡献都发挥作用。在本文中,提出了统计框架来定义总结颗粒温度,总结了配置温度和平移颗粒温度。颗粒的配置温度,平移和旋转颗粒温度通过CFD-DEM(离散元件方法)模拟,其中3D平底喷口床中的3D平底喷口。粒子的配置温度由颗粒的瞬时重叠计算。颗粒的平移和旋转颗粒温度由瞬时平移和颗粒的角速度计算。大致,模拟平移和旋转颗粒温度升高,达到最大值,然后随着固体体积级分的增加而降低。然而,配置温度随着固体体积分数的增加而增加。在高固体体积分数下,预测的配置温度大于平移和旋转粒状温度,表明能量耗散率通过弹性颗粒的接触变形有助于贡献。提出了广义颗粒温度,以显示变形的波动速度方差与颗粒的平移波动速度的变化之间的关系。颗粒压力,粘度,颗粒导电性的波动能量和快速中间致密粒度流动中的能量耗散的组成关系与广义颗粒温度相关。在具有射流的平底喷口床中的广义颗粒温度的基础上分析颗粒压力,剪切粘度,能量耗散和颗粒电导率的变化。通过快速中间密集颗粒流量的气体固体双流体模型预测的颗粒的轴向速度与喷口床中的实验结果一致。 (c)2015 Elsevier B.v.保留所有权利。

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