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A gradient radial seismic metamaterial designed using the PSO algorithm

delete2026-04-06
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PRE
AI
G
Gu, Jun-Fei
Y
Yin, Jia-Hao
L
Li, Xue-Dong
J
Jiang, Lei
Z
Zhang, Shi-Ke
Y
Yang, Shuai *
DOI:10.1051/aacus/2026020delete
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Abstract

Abstract

En 中文
This study proposes a gradient radial seismic metamaterial that integrates typical engineering core geometries with particle swarm optimization (PSO) algorithm and placement optimization to realize low-frequency, broadband surface-wave attenuation in compact footprints. Under an equal-area constraint and a band-diagram objective focused on the first two bands, the T-shaped unit emerges as the most effective core, and a front-rear graded assembly superposes Bragg-scale gaps to span 5-35 Hz, aligning with the dominant frequencies of destructive surface waves. Cylindrical-coordinate finite-element dispersion analysis, 3D frequency-domain response spectra, and time-domain excitation with the 1984 Bishop record collectively verify marked reductions in stress, displacement, and peak acceleration within the target frequency, confirming engineering feasibility. The approach addresses scalability and material-use constraints while lowering onset frequency and widening the primary band gap, offering a practical pathway for building-level seismic shielding.
Keywords:
Seismic metamaterial
Radial gradient design
Structural optimization
Frequency-time domain validation

Journal

A
Acta Acustica
IF:
1.4
Papers:
63
Citations:
0

Organization

U
university of new south wales sydney
Scholars:
2.7K
Papers: 1.2K
Citations: 0
A
Anyang Normal University
Scholars:
1.7K
Papers: 1.0K
Citations: 1.3K