LAUM, CNRS, Université du Maine, Avenue O. Messiaen, 72085 Le Mans, France.
J Acoust Soc Am. 2012 Jun;131(6):4292-303. doi: 10.1121/1.4712020.
Experimental results are reported on second harmonic generation and self-action in a noncohesive granular medium supporting wave energy propagation both in the solid frame and in the saturating fluid. The acoustic transfer function of the probed granular slab can be separated into two main frequency regions: a low frequency region where the wave propagation is controlled by the solid skeleton elastic properties, and a higher frequency region where the behavior is dominantly due to the air saturating the beads. Experimental results agree well with a recently developed nonlinear Biot wave model applied to granular media. The linear transfer function, second harmonic generation, and self-action effect are studied as a function of bead diameter, compaction step, excitation amplitude, and frequency. This parametric study allows one to isolate different propagation regimes involving a range of described and interpreted linear and nonlinear processes that are encountered in granular media experiments. In particular, a theoretical interpretation is proposed for the observed strong self-action effect.
实验结果报告了在非粘性颗粒介质中二次谐波产生和自作用的情况,该介质支持波能在固体框架和饱和流体中的传播。探测颗粒板的声学传递函数可以分为两个主要的频率区域:低频区域,波的传播由固体骨架弹性性质控制;高频区域,行为主要由饱和珠粒的空气决定。实验结果与最近开发的非线性 Biot 波模型在颗粒介质中的应用非常吻合。线性传递函数、二次谐波产生和自作用效应作为珠粒直径、压实步骤、激励幅度和频率的函数进行了研究。这项参数研究可以分离出不同的传播模式,涉及到在颗粒介质实验中遇到的一系列描述和解释的线性和非线性过程。特别是,对观察到的强烈自作用效应提出了一种理论解释。