Instituto de Física, Pontificia Universidad Católica de Valparaíso, Av. Brasil 2950, Valparaíso, Chile.
Departamento de Física, Universidad de Santiago de Chile, Av. Ecuador 3493, Santiago, Chile.
Phys Rev E. 2016 Jan;93(1):012908. doi: 10.1103/PhysRevE.93.012908. Epub 2016 Jan 25.
Mechanical impulse propagation in granular media depends strongly on the imposed confinement conditions. In this work, the propagation of sound in a granular packing contained by flexible walls that enable confinement under hydrostatic pressure conditions is investigated. This configuration also allows the form of the input impulse to be controlled by means of an instrumented impact pendulum. The main characteristics of mechanical wave propagation are analyzed, and it is found that the wave speed as function of the wave amplitude of the propagating pulse obeys the predictions of the Hertz contact law. Upon increasing the confinement pressure, a continuous transition from nonlinear to linear propagation is observed. Our results show that in the low-confinement regime, the attenuation increases with an increasing impulse amplitude for nonlinear pulses, whereas it is a weak function of the confinement pressure for linear waves.
颗粒介质中的机械脉冲传播强烈依赖于所施加的约束条件。在这项工作中,研究了在柔性壁约束下的颗粒包装中声的传播,这种约束条件可以在静水压力条件下实现。这种配置还允许通过仪器冲击摆来控制输入脉冲的形式。分析了机械波传播的主要特征,发现传播脉冲的波速与波幅的关系符合赫兹接触定律的预测。随着约束压力的增加,观察到从非线性到线性传播的连续转变。我们的结果表明,在低约束条件下,对于非线性脉冲,衰减随着脉冲幅度的增加而增加,而对于线性波,衰减则是约束压力的弱函数。