Soto R, Mareschal M
CECAM, ENS-Lyon, 46 Allée d'Italie, 69007 Lyon, France.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Apr;63(4 Pt 1):041303. doi: 10.1103/PhysRevE.63.041303. Epub 2001 Mar 26.
A statistical mechanical study of fluidized granular media is presented. Using a special energy injection mechanism, homogeneous fluidized stationary states are obtained. Molecular dynamics simulations and theoretical analysis of the inelastic hard-disk model show that there is a large asymmetry in the two-particle distribution function between pairs that approach and separate. Large velocity correlations appear in the postcollisional states due to the dissipative character of the collision rule. These correlations can be well-characterized by a state dependent pair correlation function at contact. It is also found that velocity correlations are present for pairs that are about to collide. Particles arrive at collisions with a higher probability that their velocities are parallel rather than antiparallel. These dynamical correlations lead to a decrease of the pressure and of the collision frequency as compared to their Enskog values. A phenomenological modified equation of state is presented.
本文给出了对流化颗粒介质的统计力学研究。通过一种特殊的能量注入机制,获得了均匀流化稳态。非弹性硬盘模型的分子动力学模拟和理论分析表明,接近和分离的粒子对之间的两体分布函数存在很大的不对称性。由于碰撞规则的耗散特性,在碰撞后状态中出现了大的速度相关性。这些相关性可以通过接触时依赖于状态的对关联函数很好地描述。还发现即将碰撞的粒子对也存在速度相关性。粒子以其速度平行而非反平行的更高概率到达碰撞。与它们的恩斯科格值相比,这些动力学相关性导致压力和碰撞频率降低。本文给出了一个唯象的修正状态方程。