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首页> 外文期刊>International Journal of Solids and Structures >On entropy estimates of contact forces in static granular assemblies
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On entropy estimates of contact forces in static granular assemblies

机译:关于静态颗粒组件中接触力的熵估计

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As an extension of previous work by others, this articles deals with maximum-entropy estimates for the statistics of static contact forces in assemblies of nearly rigid grains. As found in the previous works, the constraint of mean stress leads provisionally to a distribution of contact force that is exponential at large force. This behavior, found in various experiments and numerical simulations, does not depend on special models of force propagation postulated in the contemporary physics literature.Following K. Bagi [Behringer, R. Jenkins, J.T. (Eds.), Powders and Grains, Balkema, 1997, p. 251] consideration is also given to entropy maximization under the constraint of constant mean strain, which leads to a similar exponential tail in the distribution of particle displacements.In contrast to the previous works, it is emphasized that the exact form of the probability density depends on the statistical weight (a priori probability) assigned to elementary volumes in the state-space of contact forces or displacements. This leads to the conclusion that the large-force exponential is a general representation of maximum-entropy statistics arising from global constraints, whereas the state-space measure is dictated by local mechanics. A few examples of state-space measure are considered, and the resulting distributions are compared to previous experiment and simulation. A striking analogy is revealed between the force distribution in a static sphere assembly and the Maxwell-Boltzmann velocity distribution for gases.Based on the methods of statistical thermodynamics, a virtual-thermodynamic formalism is presented for complementary strain energies in granular statics. This involves no direct appeal to the concept of (static) granular temperature favored in certain statistical-physics literature. As a possible test of the general validity of the entropy principle in granular statics, the question is raised as to whether it can describe the heterogeneous two-phase structure found in photoelastic experiments and numerical simulations of granular assemblies. (C) 2004 Elsevier Ltd. All rights reserved.
机译:作为其他人先前工作的扩展,本文研究了最大熵估计值,用于统计近似刚性晶粒装配体中的静态接触力。正如先前的工作所发现的那样,平均应力的约束暂时导致了接触力的分布,该接触力在大作用力下呈指数分布。在各种实验和数值模拟中发现的这种行为并不依赖于当代物理学文献中假定的力传播的特殊模型。K. Bagi [Behringer,R. Jenkins,J.T. (编),《粉末和谷物》,巴尔科玛,1997年,第2页。 [251]也考虑了在恒定平均应变约束下的熵最大化,这导致了粒子位移分布中相似的指数尾部。与以前的工作相反,强调了概率密度的确切形式取决于分配给接触力或位移状态空间中基本体积的统计权重(先验概率)。由此得出结论,大力指数是由全局约束产生的最大熵统计量的一般表示,而状态空间量度则由局部力学决定。考虑了一些状态空间测度的示例,并将所得分布与先前的实验和仿真进行了比较。在静态球体组件中的力分布与气体的麦克斯韦-玻尔兹曼速度分布之间得出了惊人的类比。基于统计热力学方法,提出了一种虚拟热力学形式主义,用于补充颗粒静力学中的互补应变能。这并没有直接吸引某些统计物理学文献中偏爱的(静态)颗粒温度的概念。作为对颗粒静力学中熵原理的一般有效性的可能检验,人们提出了一个问题,即它能否描述在颗粒组装的光弹性实验和数值模拟中发现的异质两相结构。 (C)2004 Elsevier Ltd.保留所有权利。

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