Grasselli Y, Bossis G, Morini R
LPMC UMR6622, University of Nice, Parc Valrose, 06108, Nice Cedex 2, France,
Eur Phys J E Soft Matter. 2015 Feb;38(2):93. doi: 10.1140/epje/i2015-15008-5. Epub 2015 Feb 18.
We present an experimental study performed on a vibrated granular gas enclosed into a 2D rectangular cell. Experiments are performed in microgravity conditions achieved during parabolic flights. High speed video recording and optical tracking allow to obtain the full kinematics (translation and rotation) of the particles. The inelastic parameters are retrieved from the experimental trajectories as well as the translational and rotational velocity distributions. We report that the experimental ratio of translational versus rotational temperature decreases with the density of the medium but increases with the driving velocity of the cell. These experimental results are compared with existing theories and we point out the differences observed. We also present a model which fairly predicts the equilibrium experimental temperatures along the direction of vibration.
我们展示了一项对封闭在二维矩形单元中的振动颗粒气体进行的实验研究。实验是在抛物线飞行期间实现的微重力条件下进行的。高速视频记录和光学跟踪能够获取颗粒的完整运动学信息(平移和旋转)。从实验轨迹以及平移和旋转速度分布中获取非弹性参数。我们报告称,平移温度与旋转温度的实验比值随介质密度降低,但随单元的驱动速度增加。将这些实验结果与现有理论进行了比较,并指出了观察到的差异。我们还提出了一个模型,该模型能相当准确地预测沿振动方向的平衡实验温度。