A field experiment on surface wave isolation by partially embedded periodic pile barriers

Author:

Liu Yan-Zhao123,Yu Si-Shun1,Liu Ze14,Yu Gui-Lan1ORCID

Affiliation:

1. School of Civil Engineering, Beijing Jiaotong University, China

2. Beijing General Municipal Engineering Design & Research Institute Co., Ltd., China

3. Beijing Engineering Technology Research Center of Urban Road & Bridge Security, China

4. Department of Mechanical Engineering, The Hong Kong Polytechnic University, China

Abstract

The bandgap characteristics of periodic structures show a great application prospect in seismic isolation and vibration mitigation. A T-shaped partially embedded periodic pile barrier is designed and studied based on the Bloch’s theorem. The proposed structure is fabricated and tested in field experiment to validate the simulation and the isolation performance. Good agreements are observed between the measured and the corresponding simulated results which present effective isolation for surface waves. The influences of the embedded length in the soil and the arrangement of the pile are investigated. The results show that the embedded length is the key parameter affecting the vibration attenuation. The smaller the embedded length, the lower the frequency of attenuation zone, and thanks to the embedded length; the proposed barrier exhibits better performances than the fully embedded and non-embedded barriers in maximum bandgap width, tunability, and feasibility in engineering. Gradient distribution of the embedded length leads to a wider frequency range of attenuation.

Funder

Center of Management Science, National Natural Science Foundation of China - Peking University

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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1. Broadband surface wave manipulation by periodic barriers in unsaturated soil;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2024-07-29

2. Topology optimization on periodic pile barriers considering material damping based on complex band diagrams;Computers and Geotechnics;2023-12

3. Isolation effect of composite multilayer wave impeding block on P-wave in unsaturated foundation;Journal of Low Frequency Noise, Vibration and Active Control;2023-05-22

4. Deep learning for the design of phononic crystals and elastic metamaterials;Journal of Computational Design and Engineering;2023-02-06

5. Numerical Evaluation of the Effectiveness of Periodic Wave Barriers in Pre-stressed Saturated Soil;Journal of Vibration Engineering & Technologies;2022-12-19

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