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弹道聚合和自由冷却颗粒气体模型中聚集动力学的维度依赖性。

Dimension dependence of clustering dynamics in models of ballistic aggregation and freely cooling granular gas.

机构信息

Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P.O., Bangalore 560064, India.

出版信息

Phys Rev E. 2018 Mar;97(3-1):032902. doi: 10.1103/PhysRevE.97.032902.

Abstract

Via event-driven molecular dynamics simulations we study kinetics of clustering in assemblies of inelastic particles in various space dimensions. We consider two models, viz., the ballistic aggregation model (BAM) and the freely cooling granular gas model (GGM), for each of which we quantify the time dependence of kinetic energy and average mass of clusters (that form due to inelastic collisions). These quantities, for both the models, exhibit power-law behavior, at least in the long time limit. For the BAM, corresponding exponents exhibit strong dimension dependence and follow a hyperscaling relation. In addition, in the high packing fraction limit the behavior of these quantities become consistent with a scaling theory that predicts an inverse relation between energy and mass. On the other hand, in the case of the GGM we do not find any evidence for such a picture. In this case, even though the energy decay, irrespective of packing fraction, matches quantitatively with that for the high packing fraction picture of the BAM, it is inversely proportional to the growth of mass only in one dimension, and the growth appears to be rather insensitive to the choice of the dimension, unlike the BAM.

摘要

通过事件驱动的分子动力学模拟,我们研究了在各种空间维度下的非弹性粒子组装体中的聚集动力学。我们考虑了两种模型,即弹道聚集模型(BAM)和自由冷却颗粒气体模型(GGM),对于每个模型,我们量化了由于非弹性碰撞而形成的簇的动能和平均质量的时间依赖性。对于这两种模型,这些量至少在长时间极限下都表现出幂律行为。对于 BAM,相应的指数表现出强烈的维度依赖性,并遵循超标度关系。此外,在高堆积分数极限下,这些量的行为与预测能量和质量之间存在反比关系的标度理论一致。另一方面,在 GGM 的情况下,我们没有发现任何这样的图像的证据。在这种情况下,即使能量衰减,无论堆积分数如何,都与 BAM 的高堆积分数图像定量匹配,但它与质量的增长仅在一维呈反比关系,并且与 BAM 不同,增长似乎对维度的选择不敏感。

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