物理
斯托克斯数
雷诺数
机械
粘性液体
阻力系数
惯性
附加质量
球体
阻力
经典力学
斯托克斯定律
斯托克斯流
奇点
数学分析
湍流
流量(数学)
量子力学
数学
天文
振动
作者
Philippe Gondret,Michel Lance,Luc Petit
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2002-02-01
卷期号:14 (2): 643-652
被引量:390
摘要
We investigate experimentally the bouncing motion of solid spheres onto a solid plate in an ambient fluid which is either a gas or a liquid. In particular, we measure the coefficient of restitution e as a function of the Stokes number, St, ratio of the particle inertia to the viscous forces. The coefficient e is zero at small St, increases monotonically with St above the critical value Stc and reaches an asymptotic value at high St corresponding to the classical “dry” value emax measured in air or vacuum. This behavior is observed for a large range of materials and a master curve e/emax=f(St) is obtained. If gravity is sufficient to describe the rebound trajectory (after the collision) in a gas, this is not the case in a liquid where drag and added-mass effect are important but not sufficient: History forces are shown to be non-negligible even at large Reynolds number.
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