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颗粒材料中的涨落、关联与转变:非常规系统的统计力学

Fluctuations, correlations and transitions in granular materials: statistical mechanics for a non-conventional system.

作者信息

Behringer R P, Daniels Karen E, Majmudar Trushant S, Sperl Matthias

机构信息

Department of Physics and Center for Nonlinear and Complex Systems, Duke University, Durham, NC 27708-0320, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2008 Feb 28;366(1865):493-504. doi: 10.1098/rsta.2007.2106.

Abstract

In this work, we first review some general properties of dense granular materials. We are particularly concerned with a statistical description of these materials, and it is in this light that we briefly describe results from four representative studies. These are: experiment 1: determining local force statistics, vector forces, force distributions and correlations for static granular systems; experiment 2: characterizing the jamming transition, for a static two-dimensional system; experiment 3: characterizing plastic failure in dense granular materials; and experiment 4: a dynamical transition where the material 'freezes' in the presence of apparent heating for a sheared and shaken system.

摘要

在这项工作中,我们首先回顾稠密颗粒材料的一些一般特性。我们特别关注这些材料的统计描述,正是基于此,我们简要描述四项代表性研究的结果。这些研究分别是:实验1:确定静态颗粒系统的局部力统计、矢量力、力分布和相关性;实验2:表征静态二维系统的堵塞转变;实验3:表征稠密颗粒材料中的塑性破坏;实验4:一种动力学转变,在该转变中,对于一个剪切和振动系统,材料在明显加热的情况下“冻结”。

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