Numerical Simulation for Initial State of Avalanche in Polydisperse Particle Systems

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Chinese Physics B Pub Date : 2023-12-01 DOI:10.1088/1674-1056/ad117b
Ren Han, Ting Li, Zhipeng Chi, Hui Yang, Ran Li
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Abstract

In this paper, numerical simulation is employed to investigate the initial state of avalanche in polydisperse particle systems. Nucleation and propagation processes are illustrated for pentadisperse and triadisperse particle systems, respectively. In these processes, particles involved in the avalanche grow slowly in the early stage and explosively in the later stage, which is clearly different from the continuous and steady growth trend in monodisperse system. By examining the avalanche propagation, the number growth of particles involved in the avalanche and the slope of the number growth, the initial state can be divided into three stages: T1(nucleation stage), T2 (propagation stage), T3(overall avalanche stage). We focus on the characteristics of the avalanche in T2 stage, and find that propagation distances increase almost linearly in both axial and radial directions in polydisperse systems. We also consider the distribution characteristics of the average coordination number and average velocity for the moving particles. The results support that the polydisperse particle systems are more stable in T2 stage.
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多分散粒子系统雪崩初始状态的数值模拟
本文采用数值模拟方法研究了多分散粒子系统中雪崩的初始状态。分别说明了五分散和三分散粒子系统的成核和扩展过程。在这些过程中,参与雪崩的颗粒在早期缓慢生长,在后期急剧生长,这明显不同于单分散体系中连续稳定的生长趋势。通过考察雪崩传播、参与雪崩的粒子数量增长和数量增长的斜率,将初始状态分为三个阶段:T1(成核阶段)、T2(传播阶段)、T3(整体雪崩阶段)。我们重点研究了T2阶段雪崩的特征,发现在多分散系统中,传播距离在轴向和径向上几乎呈线性增长。我们还考虑了运动粒子的平均配位数和平均速度的分布特征。结果表明,多分散颗粒体系在T2阶段更加稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chinese Physics B
Chinese Physics B 物理-物理:综合
CiteScore
2.80
自引率
23.50%
发文量
15667
审稿时长
2.4 months
期刊介绍: Chinese Physics B is an international journal covering the latest developments and achievements in all branches of physics worldwide (with the exception of nuclear physics and physics of elementary particles and fields, which is covered by Chinese Physics C). It publishes original research papers and rapid communications reflecting creative and innovative achievements across the field of physics, as well as review articles covering important accomplishments in the frontiers of physics. Subject coverage includes: Condensed matter physics and the physics of materials Atomic, molecular and optical physics Statistical, nonlinear and soft matter physics Plasma physics Interdisciplinary physics.
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