Pillarisetti Lalith Sai Srinivas, Lissenden Cliff J, Shokouhi Parisa
Department of Engineering Science and Mechanics, Penn State, University Park, Pennsylvania 16802, USA.
J Acoust Soc Am. 2024 Sep 1;156(3):1594-1608. doi: 10.1121/10.0028536.
The gravity-induced depth-dependent elastic properties of a granular half-space result in multiple dispersive surface modes and demand the consideration of material heterogeneity in metabarrier designs to suppress surface waves. Numerous locally resonant metabarrier configurations have been proposed in the literature to suppress Rayleigh surface waves in homogeneous media, with little focus on extending the designs to a heterogeneous half-space. In this work, a metabarrier comprising partially embedded rod-like resonators to suppress the fundamental dispersive surface wave modes in heterogeneous granular media known as first order PSV (PSV1; where P is the longitudinal mode and SV is the shear-vertical mode) and second order PSV (PSV2) is proposed. The unit-cell dispersion analysis, together with an extensive frequency-domain finite element analysis, reveals preferential hybridization of the PSV1 and PSV2 modes with the longitudinal and flexural resonances of the resonators, respectively. The presence of the cutoff frequency for the longitudinal-resonance hybridized mode facilitates straightforward suppression of the PSV1 mode, while PSV2 mode suppression is possible by tailoring the hybridized flexural resonance modes. These PSV1 and PSV2 bandgaps are realized experimentally in a granular testbed comprising glass beads by embedding 3D-printed resonator rods. Also explored are novel graded metabarriers capable of suppressing both PSV1 and PSV2 modes over a broad frequency range for potential applications in vibration control and seismic isolation.
颗粒状半空间中由重力引起的深度相关弹性特性会导致多种色散表面模式,因此在超屏障设计中需要考虑材料的非均匀性以抑制表面波。文献中已经提出了许多局部共振超屏障配置来抑制均匀介质中的瑞利表面波,但很少有人关注将这些设计扩展到非均匀半空间。在这项工作中,我们提出了一种超屏障,它由部分嵌入的棒状谐振器组成,用于抑制非均匀颗粒介质中的基本色散表面波模式,即一阶PSV(PSV1;其中P是纵向模式,SV是剪切垂直模式)和二阶PSV(PSV2)。通过单元胞色散分析以及广泛的频域有限元分析发现,PSV1和PSV2模式分别与谐振器的纵向和弯曲共振发生了优先杂化。纵向共振杂化模式截止频率的存在便于直接抑制PSV1模式,而通过调整杂化弯曲共振模式可以抑制PSV2模式。通过在包含玻璃珠的颗粒试验台上嵌入3D打印的谐振器棒,在实验中实现了这些PSV1和PSV2带隙。还探索了新型渐变超屏障,其能够在很宽的频率范围内抑制PSV1和PSV2模式,具有在振动控制和地震隔离方面的潜在应用价值。