Molinari Alain, Daraio Chiara
Université Paul Verlaine-Metz, Ile du Saulcy, Metz 57045, France.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Nov;80(5 Pt 2):056602. doi: 10.1103/PhysRevE.80.056602. Epub 2009 Nov 17.
We study the existence of stationary shock waves in uniform and periodic heterogeneous highly nonlinear granular chains governed by a power-law contact interaction, comparing discrete and continuum approaches, as well as experiments. We report the presence of quasisteady shock fronts without the need for dissipative effects. When viscous effects are neglected, the structure of the leading front appears to be solely the result of dispersive effects related to the lattice wave dispersion and, for heterogeneous bead chains, to the impedance mismatch between material domains. We report analytically and numerically the shock-width scaling with the variation in the particles periodicity (cell size) and compare the obtained results with experiments. We check the state (-) behind the shock front via quasistatic compression analysis and report a very good agreement between theory and numerical data.
我们研究了由幂律接触相互作用控制的均匀和周期性非均匀高度非线性颗粒链中驻波激波的存在性,比较了离散和连续介质方法以及实验结果。我们报告了无需耗散效应即可存在准稳态激波前沿。当忽略粘性效应时,前沿的结构似乎仅仅是与晶格波色散相关的色散效应的结果,对于非均匀珠子链而言,还与材料域之间的阻抗失配有关。我们通过分析和数值方法报告了激波宽度随颗粒周期性(单元尺寸)变化的标度关系,并将所得结果与实验进行了比较。我们通过准静态压缩分析检查了激波前沿后的状态(-),并报告了理论与数值数据之间的良好一致性。