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颗粒介质库埃特流中克劳修斯 - 杜亥姆不等式的违反情况。

Violations of the Clausius-Duhem inequality in Couette flows of granular media.

作者信息

Ostoja-Starzewski Martin, Laudani Rossella

机构信息

Department of Mechanical Science and Engineering, Institute for Condensed Matter Theory, Beckman Institute, University of Illinois at Urbana-Champaign, Champaign, IL, USA.

Department of Engineering, University of Messina, Messina, Italy.

出版信息

Proc Math Phys Eng Sci. 2020 Dec;476(2244):20200207. doi: 10.1098/rspa.2020.0207. Epub 2020 Dec 23.

Abstract

Spontaneous violations of the Clausius-Duhem (CD) inequality in Couette-type collisional flows of model granular media are studied. Planar systems of monosized circular discs (with disc numbers from 10 to 204, and disc diameters from 0.001 m to 1 m) with frictional-Hookean contacts are simulated under periodic boundary conditions by a molecular dynamics. The scale-dependent homogenization of micropolar media is used to determine the energy balances and mechanical entropy production. The dissipation function exhibits spontaneous negative entropy increments described by the fluctuation theorem. The boundary between violations and non-violations of the CD inequality is mapped in the parameter space, where the probability of such events diminishes with the disc diameter, the disc number and the area fraction increasing. The dissipation function is a random process, tending to Gaussian as the number of discs increases, and possessing non-trivial fractal and anti-persistent Hurst properties.

摘要

研究了模型颗粒介质库埃特型碰撞流中克劳修斯 - 迪厄姆(CD)不等式的自发违反情况。通过分子动力学在周期性边界条件下模拟了具有摩擦 - 胡克接触的单尺寸圆盘平面系统(圆盘数量从10到204,圆盘直径从0.001 m到1 m)。利用微极介质的尺度相关均匀化来确定能量平衡和机械熵产生。耗散函数表现出自发的负熵增量,由涨落定理描述。CD不等式违反与不违反之间的边界在参数空间中被映射出来,其中此类事件的概率随着圆盘直径、圆盘数量和面积分数的增加而减小。耗散函数是一个随机过程,随着圆盘数量的增加趋于高斯分布,并具有非平凡的分形和反持久赫斯特特性。

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