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Driven and undriven states of multicomponent granular gases of inelastic and rough hard disks or spheres

机译:非弹性和粗糙硬盘或球体的多组分颗粒气体的驱动状态和非驱动状态

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Starting from a recent derivation of the energy production rates in terms of the number of translational and rotational degrees of freedom, a comparative study on different granular temperatures in gas mixtures of inelastic and rough disks or spheres is carried out. Both the homogeneous freely cooling state and the state driven by a stochastic thermostat are considered. It is found that the relaxation number of collisions per particle is generally smaller for disks than for spheres, the mean angular velocity relaxing more rapidly than the temperature ratios. In the asymptotic regime of the undriven system, the rotational-translational nonequipartition is stronger in disks than in spheres, while it is hardly dependent on the class of particles in the driven system. On the other hand, the degree of component-component nonequipartition is higher for spheres than for disks, both for driven and undriven systems. A study of the mimicry effect (whereby a multicomponent gas mimics the rotational-translational temperature ratio of a monocomponent gas) is also undertaken.
机译:从最近根据平移和旋转自由度数得出的能源生产率开始,对非弹性和粗糙盘状或球形混合气体中不同的颗粒温度进行了比较研究。均质的自由冷却状态和随机恒温器驱动的状态都被考虑。发现圆盘每粒子碰撞的弛豫数通常小于球形,平均角速度的弛豫速度比温度比快。在非驱动系统的渐近状态下,圆盘中的旋转-平移非等分强于球形,而几乎不依赖于驱动系统中的粒子类别。另一方面,对于驱动系统和非驱动系统,球的组件-组件非均等程度都高于磁盘。还进行了模仿效果的研究(因此,多组分气体模拟了单组分气体的旋转-平移温度比)。

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