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    Two-Dimensional Finite-Element Simulation of Periodic Barriers

    Source: Journal of Engineering Mechanics:;2021:;Volume ( 147 ):;issue: 002::page 04020150-1
    Author:
    Hsuan Wen Huang
    ,
    Jiaji Wang
    ,
    Chunfeng Zhao
    ,
    Y. L. Mo
    DOI: 10.1061/(ASCE)EM.1943-7889.0001891
    Publisher: ASCE
    Abstract: A novel kind of seismic isolation technique called “Periodic Barriers,” which combines trench-type wave barriers and metamaterial, is introduced in this research. Metamaterial possesses a unique frequency-selective property that enables the metamaterial to manipulate the wave propagation. By infilling the metamaterials in the trench-type wave barriers, the periodic barriers are expected to display advantages of both the wave barriers and the metamaterials. The two-dimensional (2D) finite-element (FE) simulation is conducted to study the performance of the barriers adapting the metamaterial. This FE model is validated with the experiment on the metamaterial-based foundation. The convergence test on mesh size with different element types are investigated, and the minimum mesh size and property element type are determined for simulating the behavior of metamaterial. To simulate the unbounded domain, the absorbing boundary is implemented to eliminate the reflection from the boundaries. The dynamic responses obtained from models with infinite element boundary and viscoelastic boundary are found to converge with the increasing model size. To boost the computing efficiency, two analysis methods (fix-frequency harmonic analysis, and the time-history analysis) are adopted and found to have a strong correlation with each other. Based on the proposed modeling techniques and the analysis methods, the simulation of the periodic barriers embedded in the soil is performed. With various loading distance and the number of periodic barriers, the performance of the periodic barriers is found to comply with its theoretical frequency band gaps.
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      Two-Dimensional Finite-Element Simulation of Periodic Barriers

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    contributor authorHsuan Wen Huang
    contributor authorJiaji Wang
    contributor authorChunfeng Zhao
    contributor authorY. L. Mo
    date accessioned2022-02-01T00:16:11Z
    date available2022-02-01T00:16:11Z
    date issued2/1/2021
    identifier other%28ASCE%29EM.1943-7889.0001891.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4271179
    description abstractA novel kind of seismic isolation technique called “Periodic Barriers,” which combines trench-type wave barriers and metamaterial, is introduced in this research. Metamaterial possesses a unique frequency-selective property that enables the metamaterial to manipulate the wave propagation. By infilling the metamaterials in the trench-type wave barriers, the periodic barriers are expected to display advantages of both the wave barriers and the metamaterials. The two-dimensional (2D) finite-element (FE) simulation is conducted to study the performance of the barriers adapting the metamaterial. This FE model is validated with the experiment on the metamaterial-based foundation. The convergence test on mesh size with different element types are investigated, and the minimum mesh size and property element type are determined for simulating the behavior of metamaterial. To simulate the unbounded domain, the absorbing boundary is implemented to eliminate the reflection from the boundaries. The dynamic responses obtained from models with infinite element boundary and viscoelastic boundary are found to converge with the increasing model size. To boost the computing efficiency, two analysis methods (fix-frequency harmonic analysis, and the time-history analysis) are adopted and found to have a strong correlation with each other. Based on the proposed modeling techniques and the analysis methods, the simulation of the periodic barriers embedded in the soil is performed. With various loading distance and the number of periodic barriers, the performance of the periodic barriers is found to comply with its theoretical frequency band gaps.
    publisherASCE
    titleTwo-Dimensional Finite-Element Simulation of Periodic Barriers
    typeJournal Paper
    journal volume147
    journal issue2
    journal titleJournal of Engineering Mechanics
    identifier doi10.1061/(ASCE)EM.1943-7889.0001891
    journal fristpage04020150-1
    journal lastpage04020150-14
    page14
    treeJournal of Engineering Mechanics:;2021:;Volume ( 147 ):;issue: 002
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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