Szelengowicz I, Kevrekidis P G, Daraio C
Graduate Aerospace Laboratories, GALCIT, California Institute of Technology, Pasadena, California 91125, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Dec;86(6 Pt 1):061306. doi: 10.1103/PhysRevE.86.061306. Epub 2012 Dec 12.
We investigate the propagation and scattering of highly nonlinear waves in granular systems composed of spheres in contact arranged in a square packing, and study how the presence of small and light spherical interstitial defects, also referred to as intruders, affects the wave propagation. The effects of a single defect are investigated experimentally and compared to numerical simulations, showing very good quantitative agreement. Transmitted and scattered waves are formed, whose characteristics depend on the material properties of the defect in relation to the properties of the particles in the lattice. Experiments and numerical simulations reveal that stiffer defects are more efficient at redistributing energy outside the impacted chain and soft defects induce a localization of the energy at the defect. Finally, the effects of the presence of two defects, placed diagonally or aligned in the square packing are also investigated, as well as how their interaction depends on their relative positions.
我们研究了由紧密排列成方形堆积的球体组成的颗粒系统中高度非线性波的传播和散射,并研究了小而轻的球形间隙缺陷(也称为入侵者)的存在如何影响波的传播。对单个缺陷的影响进行了实验研究,并与数值模拟进行了比较,结果显示出非常好的定量一致性。形成了透射波和散射波,其特性取决于缺陷的材料特性与晶格中粒子特性的关系。实验和数值模拟表明,较硬的缺陷在将能量重新分布到受影响链之外方面更有效,而软缺陷会导致能量在缺陷处局部化。最后,还研究了在方形堆积中对角放置或对齐的两个缺陷的存在所产生的影响,以及它们的相互作用如何取决于它们的相对位置。