To Kiwing
Institute of Physics, Academia Sinica, Taipei, Taiwan 115, Republic of China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Jun;89(6):062111. doi: 10.1103/PhysRevE.89.062111. Epub 2014 Jun 9.
We investigate experimentally the steady state motion of a millimeter-sized granular polyhedral object on vertically vibrating platforms of flat, conical, and parabolic surfaces. We find that the position distribution of the granular object is related to the shape of the platform, just like that of a Brownian particle trapped in a potential at equilibrium, even though the granular object is intrinsically not at equilibrium due to inelastic collisions with the platform. From the collision dynamics, we derive the Langevin equation which describes the motion of the object under an effective potential that equals the gravitational potential along the platform surface. The potential energy is found to agree with the equilibrium equipartition theorem while the kinetic energy does not. Furthermore, the granular temperature is found to be higher than the effective temperature associated with the average potential energy, suggesting the presence of heat transfer from the kinetic part to the potential part of the granular object.
我们通过实验研究了毫米级颗粒多面体物体在平坦、锥形和抛物面垂直振动平台上的稳态运动。我们发现,颗粒物体的位置分布与平台形状有关,就如同处于平衡态的被困在势场中的布朗粒子一样,尽管由于与平台的非弹性碰撞,颗粒物体本质上并不处于平衡态。从碰撞动力学出发,我们推导出了朗之万方程,该方程描述了物体在有效势作用下的运动,该有效势等于沿平台表面的引力势。结果发现,势能符合平衡均分定理,而动能则不然。此外,发现颗粒温度高于与平均势能相关的有效温度,这表明存在从颗粒物体的动能部分到势能部分的热传递。