van Zon J S, MacKintosh F C
Division of Physics and Astronomy, Vrije Universiteit, 1081 HV Amsterdam, The Netherlands.
Phys Rev Lett. 2004 Jul 16;93(3):038001. doi: 10.1103/PhysRevLett.93.038001. Epub 2004 Jul 12.
Motivated by recent experiments reporting non-Gaussian velocity distributions in driven dilute granular materials, we study by numerical simulation the properties of 2D inelastic gases. We find theoretically that the form of the observed velocity distribution is governed primarily by the coefficient of restitution eta and q=N(H)/N(C), the ratio between the average number of heatings and the average number of collisions in the gas. The differences in distributions we find between uniform and boundary heating can then be understood as different limits of q, for q>>1 and q less, similar 1, respectively.
受近期有关驱动稀颗粒材料中非高斯速度分布实验的启发,我们通过数值模拟研究二维非弹性气体的性质。我们从理论上发现,观测到的速度分布形式主要由恢复系数η和q = N(H)/N(C)(气体中平均加热次数与平均碰撞次数之比)决定。然后我们发现均匀加热和边界加热之间分布的差异可以理解为q的不同极限情况,分别对应q>>1和q≤1。