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噪声对剪切作用下小颗粒系统中固-液转变的影响。

Effect of noise on solid-to-liquid transition in small granular systems under shear.

作者信息

Melhus Martin F, Aranson Igor S, Volfson Dmitri, Tsimring Lev S

机构信息

Department of Physics, Northwestern University, Evanston, Illinois 60208-3112, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Oct;80(4 Pt 1):041305. doi: 10.1103/PhysRevE.80.041305. Epub 2009 Oct 15.

Abstract

The effect of noise on the solid-to-liquid transition of a dense granular assembly under planar shear is studied numerically using soft-particle molecular dynamics simulations in two dimensions. We focus on small systems in a thin planar Couette cell, examining the bistable region while increasing shear, with varying amounts of random noise, and determine statistics of the shear required for fluidization. In the absence of noise, the threshold value of the shear stress depends on the preparation of the system and has a broad distribution. However, adding force fluctuations both lowers the mean threshold value of the shear stress and decreases its variability. This behavior is interpreted as thermoactivated escape through a fluctuating barrier.

摘要

利用二维软颗粒分子动力学模拟,对平面剪切作用下致密颗粒集合体的固 - 液转变过程中的噪声效应进行了数值研究。我们聚焦于薄平面库埃特流槽中的小系统,在增加剪切力的同时,研究不同随机噪声量下的双稳区域,并确定流化所需剪切力的统计数据。在无噪声情况下,剪切应力的阈值取决于系统的初始状态,且分布范围较广。然而,添加力涨落既降低了剪切应力的平均阈值,又减小了其变异性。这种行为被解释为通过波动势垒的热激活逃逸。

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