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Hysteresis and Soil Site Dependent Input and Hysteretic Energy Spectra for Far-Source Ground Motions

机译:远源地震动的迟滞和土壤位置相关输入以及迟滞能量谱

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摘要

Earthquake input energy spectra for four soil site classes, four hysteresis models, and five ductility levels are developed for far-source ground motion effect. These energy spectra are normalized by a quantity called velocity index (VI). The use of VI allows for the creation of dimensionless spectra and results in smaller coefficients of variation. Hysteretic energy spectra are then developed to address the demand aspect of an energy-based seismic design of structures with 5% critical damping and ductility that ranges from 2 to 5. The proposed input and hysteretic energy spectra are then compared with response spectra generated using nonlinear time history analyses of real ground motions and are found to produce reasonably good results over a relatively large period range.
机译:针对远源地震动效应,开发了四种土壤位点类别,四个滞后模型和五个延性级别的地震输入能谱。这些能谱通过称为速度指数(VI)的量进行归一化。 VI的使用允许创建无量纲的光谱,并导致较小的变化系数。然后开发磁滞能谱,以解决结构的基于能量的抗震设计的需求方面,该结构的5%临界阻尼和延展性介于2到5之间。然后将建议的输入和磁滞能谱与使用非线性生成的响应谱进行比较。真实地面运动的时程分析,并在相对较大的时间范围内产生了相当不错的结果。

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  • 来源
    《Advances in civil engineering》 |2016年第2016期|1548319.1-1548319.29|共29页
  • 作者单位

    Michael Baker International, Hamilton, NJ 08619, USA;

    Department of Civil and Environmental Engineering, Syracuse University, Syracuse, NY 13244-1240, USA;

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  • 正文语种 eng
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