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Force distribution in a scaler model for noncohesive granular material

机译:非粘性颗粒材料在定标器模型中的力分布

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We study a scalar lattice model for intergrain forces in static, noncohesive, granular materials, obtaining two primary results: (i) The applied stress as a function of overall strain shows a power law dependence with a nontrivial exponent, which moreover varies with system geometry; and (ii) probability distributions for forces on individual grains appear Gaussian at all stages of compression, showing no evidence of exponential tails. With regard to both results, we identify correlations responsible for deviations from previously suggested theories. [S1063-651X(99)08808-X]. [References: 18]
机译:我们研究了静态,非粘性,粒状材料中晶间力的标量晶格模型,获得了两个主要结果:(i)作为总应变函数的外加应力显示出幂律的相关性,且随幂级的变化而变化,而且随系统几何形状的变化而变化; (ii)各个晶粒上力的概率分布在压缩的所有阶段均呈高斯分布,没有显示出指数尾巴的迹象。关于这两个结果,我们确定了导致与先前提出的理论存在偏差的相关性。 [S1063-651X(99)08808-X]。 [参考:18]

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