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Quenched Stresses And Linear Elastic Response Of Random Packings Of Frictionless Particles Near Jamming.

机译:干扰附近无摩擦颗粒随机堆积的淬火应力和线性弹性响应。

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摘要

We study stress correlations and elastic response in large-scale computer simulations of particle packings near jamming. We show that there are characteristic lengths in both the stresses and elastic response that diverge in similar ways as the confining pressure approaches zero from above. For the case of the stress field, we show that the power spectrum of the hydrostatic pressure and shear stress agrees with a field-theoretic framework proposed by Henkes and Chakraborty [15] at short to intermediate wavelengths (where the power is flat in Fourier space), but contains significant excess power at wavelengths larger than about 50 to 100 particle diameters, with the specific crossover point going to larger wavelength at decreasing pressure, consistent with a divergence at p = 0. These stress correlations were missed in previous studies by other groups due to limited system size. For the case of the elastic response, we probe the system in three ways: i) point forcing, ii) constrained homogeneous deformation where the system is driven with no-slip boundary conditions, and iii) free periodic homogeneous deformation. For the point force, we see distinct characteristic lengths for longitudinal and transverse modes each of which diverges in a different way with decreasing pressure with xiT ∼ p--1/4 and xiL ∼ p--0.4 respectively. For the constrained homogeneous deformation we see a scaling of the local shear modulus with the size of the probing region consistent with xi ∼ p--1/2 similar to the xiL ∼ p --0.4 observed in the longitudinal component of the point response and in perfect agreement with the rigidity length discussed in recently proposed scenarios for jamming. Finally, we show that the transverse and longitudinal contributions to the strain field in response to unconstrained deformation (either volumetric or shear) have markedly different behavior. The transverse contribution is surprisingly invariant with respect to p with localized shear transformations dominating the response down to surprisingly small pressures. The longitudinal contribution develops a feature at small wavelength that intensifies with decreasing p but does not show any appreciable change in length. We interpret this pressure-invariant length as the characteristic shear zone size.
机译:我们在接近堵塞的颗粒堆积的大型计算机模拟中研究应力相关性和弹性响应。我们显示,当围压从上方接近零时,应力和弹性响应都有特征长度,它们以相似的方式发散。对于应力场,我们表明静水压力和切应力的功率谱与Henkes和Chakraborty [15]在短至中波长处的场论框架一致(其中傅立叶空间中的功率是平坦的) ),但在大于约50到100粒径的波长处包含显着的过剩功率,在压力降低时,特定的交叉点趋向于较大的波长,与p = 0处的发散相一致。组由于有限的系统大小。对于弹性响应,我们以三种方式对系统进行探测:i)点强迫,ii)约束均质变形,其中系统在无滑移边界条件下驱动,iii)自由周期性均质变形。对于点力,我们看到了纵向和横向模态的不同特征长度,每个特征模态随着压力的降低以不同的方式发散,分别为xiT〜p--1 / 4和xiL〜p--0.4。对于受约束的均匀变形,我们看到局部剪切模量的缩放比例与探测区域的大小一致,与xi〜p--1 / 2相似,这与在点响应的纵向分量中观察到的xiL〜p --0.4相似。与最近提出的卡塞情况中讨论的刚度长度完全一致。最后,我们表明响应于无约束变形(体积或剪切)而对应变场的横向和纵向贡献具有明显不同的行为。相对于p,横向贡献出乎意料地是不变的,局部剪切变换主导着对令人惊讶的小压力的响应。纵向贡献在小波长处形成了一个特征,该特征随着p的减小而增强,但长度没有明显变化。我们将此不变压力长度解释为特征剪切区大小。

著录项

  • 作者

    Karimi, Kamran.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Engineering Civil.;Engineering Mechanical.;Physics General.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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