论文标题

对局部谐振定期基础的分析研究,用于减轻地铁的结构传播振动

Analytical Research on a Locally Resonant Periodic Foundation for Mitigating Structure-Borne Vibrations from Subway

论文作者

Xu, Yifei, Cao, Zhigang, Yuan, Zonghao, Cai, Yuanqiang, Costa, Pedro Alves

论文摘要

局部共振周期基础(LRPF)的过滤特性启发了朝着缓解结构振动的创新方向。为了减轻地铁的结构传播振动,本研究提出了一个配备了连接谐振器和一级结构的负刚度设备的LRPF。提出的LRPF可以表现出覆盖超低频率范围的准静态带隙。这些频率成分具有强衍射和低衰减的特性,并对撞击附近建筑物的入射波场有最大的贡献。通过制定隧道地面和LRPF-Superstructure系统之间的相互作用问题,考虑了土壤依从性和上层建筑的影响,评估了提出的LRPF的缓解性能。性能取决于地面,基础和上层建筑的动态特性及其耦合。传输分析表明,可以通过调节负刚度在准静态带隙中有效地减弱上层建筑响应。考虑到柔性地面的耦合,LRPF-Superstructure System的峰值响应不仅发生在其本征频率上,而且由于土壤合规的贡献而在耦合共振频率上也发生。这项研究提供了一种分析工具,可通过LRPF来减轻地铁的结构传播振动。

Filtering properties of locally resonant periodic foundations (LRPFs) have inspired an innovative direction towards the mitigation of structural vibrations. To mitigate the structure-borne vibrations from subways, this study proposes an LRPF equipped with a negative stiffness device connecting the resonator and primary structure. The proposed LRPF can exhibit a quasi-static band gap covering the ultra-low frequency range. These frequency components have the properties of strong diffraction and low attenuation and contribute the most to the incident wave fields impinging on nearby buildings. By formulating the interaction problem between the tunnel-ground and LRPF-superstructure systems, the mitigation performance of the proposed LRPF is evaluated considering the effects of soil compliance and superstructure. The performance depends on the dynamic properties of the ground, foundation, and superstructure as well as their coupling. Transmission analyses indicate that the superstructure responses can be effectively attenuated in the quasi-static band gap by adjusting the negative stiffness. Considering the coupling of the flexible ground, the peak responses of the LRPF-superstructure system occur not only at its eigenfrequencies but also at coupled resonance frequencies due to the contribution of the soil compliance. This study provides an analytical tool for mitigating the structure-borne vibrations from subways with the LRPF.

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