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Energy non-equipartition in strongly convective granular systems

机译:强对流颗粒系统中的能量非等分

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Using positron emission particle tracking, the effects of convective motion and the resulting segregative behaviour on the partition of kinetic energy between the components of a bidisperse granular system are, for the first time, systematically investigated. It is found that the distribution of energy between the two system components, which are equal in size but differ in their material properties, is strongly dependent on the degree of segregation observed in the granular bed. The results obtained demonstrate that the difference in energy obtained by dissimilar particle species is not an innate property of the materials in question, but can in fact be altered through variation of the relevant system parameters. The existence of a relationship between the convective and segregative properties of a granular system and the degree of energy equipartition within the system implies the possibility of extending existing theory into the convective regime. Thus, our findings represent an incremental step towards the definition of a granular analogy to temperature that can be applied to more generalised systems and, through this, an improved understanding of inhomogeneous granular systems in general.
机译:使用正电子发射粒子跟踪,首次系统地研究了对流运动和由此产生的偏析行为对双分散颗粒系统各组分之间动能分配的影响。已经发现,大小相等但材料特性不同的两个系统组件之间的能量分布强烈依赖于在颗粒床中观察到的偏析程度。所获得的结果表明,由不同的粒子种类获得的能量差不是所讨论材料的固有特性,但实际上可以通过更改相关系统参数来改变。颗粒系统的对流和偏析性质与系统内能量均分程度之间存在关系,这暗示了将现有理论扩展到对流状态的可能性。因此,我们的发现代表了朝着定义类似于温度的粒度的增量步骤,可以将其应用于更广义的系统,并由此改善对非均匀粒度系统的理解。

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