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首页> 外文期刊>Seismological research letters >METACity-Quito: A Semi-Dense Urban Seismic Network Deployed to Analyze the Concept of Metamaterial for the Future Design of Seismic-Proof Cities
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METACity-Quito: A Semi-Dense Urban Seismic Network Deployed to Analyze the Concept of Metamaterial for the Future Design of Seismic-Proof Cities

机译:Metacity-Quito:部署了半密集的城市地震网络,分析了超级材料的概念,以便未来防震城市设计

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摘要

The presence of multiscale interactions means that the complex urban wavefield must be observed and analyzed in order to understand seismic ground motion in urban environments. Originally called site-city interaction, the interactions between soil and structures, structures and soil, and between structures contribute to the modification of urban seismic ground motion. This may affect the lateral variability of the ground motion observed in relation to earthquake damage, the characterization of site effects in urban areas, and also the response of civil engineering structures designed without consideration of the immediate urban environment. The METACity-Quito experiment was designed to take accurate measurements of the effects of the resonator array formed by structures in the seismic wavefield, in the manner of an urban metamaterial. Current applications in the fields of physics, acoustics and, more recently, geophysics have shown the existence of forbidden bands, that is, frequencies at which seismic energy vanishes. This concept could help to understand the heterogeneous distribution of damage in urban areas as well as to imagine the future design of seismic-proof cities.
机译:多尺度相互作用的存在意味着必须观察和分析复杂的城市波场,以便理解城市环境中的地震地面运动。最初称为场地城市互动,土壤和结构,结构和土壤之间的相互作用,以及结构之间的相互作用有助于城市地震地面运动的修改。这可能影响与地震损伤观察到的地面运动的横向变化,城市地区的现场效果的表征,以及在不考虑立即城市环境的情况下设计的土木工程结构的响应。旨在采用城市超材料的方式采取由地震波场中的结构形成的谐振器阵列的效果的准确测量。目前物理学,声学和最近,地球物理的目前的应用表明存在禁用带的存在,即地震能量消失的频率。这一概念可以帮助了解城市地区损坏的异质分布,并想象防震城市的未来设计。

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  • 来源
    《Seismological research letters》 |2019年第6期|共9页
  • 作者单位

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    CEREMA Mediterranee MouvGS Res Team 500 Route Lucioles CS 80125 F-06903 Valbonne Sophia Antipoli France;

    Escuela Politecn Nacl Quito Inst Geofis Campus Ing Jose Ruben Orellana Quito 170525 Pichincha Ecuador;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    Escuela Politecn Nacl Quito Inst Geofis Campus Ing Jose Ruben Orellana Quito 170525 Pichincha Ecuador;

    Univ Paris Est IFSTTAR 14-20 Blvd Newton F-77420 Champs Sur Marne France;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    CEREMA Mediterranee MouvGS Res Team 500 Route Lucioles CS 80125 F-06903 Valbonne Sophia Antipoli France;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    Escuela Politecn Nacl Quito Inst Geofis Campus Ing Jose Ruben Orellana Quito 170525 Pichincha Ecuador;

    CEREMA Mediterranee MouvGS Res Team 500 Route Lucioles CS 80125 F-06903 Valbonne Sophia Antipoli France;

    Escuela Politecn Nacl Quito Inst Geofis Campus Ing Jose Ruben Orellana Quito 170525 Pichincha Ecuador;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

    Univ Savoie Mt Blanc Univ Grenoble Alpes ISTerre CNRS IRD IFSTTAR 1381 Rue Piscine CS 40700 F-38058 Grenoble 9 France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地震学;
  • 关键词

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