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首页> 外文期刊>Bulletin of the Seismological Society of America >Spatial Cross-Correlation Models for Absolute and Relative Spectral Input Energy Parameters Based on Geostatistical Tools
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Spatial Cross-Correlation Models for Absolute and Relative Spectral Input Energy Parameters Based on Geostatistical Tools

机译:基于地统计工具的绝对和相对光谱输入能量参数的空间互相关模型

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摘要

In recent years, energy-based seismic design methodology has received increasing attention because it takes into account not only the force and displacement behavior of a structure but also the cumulative damage effect caused by seismic loading. Specifically, as a fundamental parameter, input energy parameters (both absolute and relative measures) are directly related to the cumulative damage potential; therefore, they are commonly used in energy-based seismic design and seismic risk assessment. This study thus proposes new spatial cross-correlation models for absolute and relative elastic input energy parameters, using 2219 ground-motion records selected from 12 earthquake events. The normalized within-event residuals for both absolute and relative measures are first calculated. Semivariogram analysis is then conducted to quantify the spatial correlation of residuals for the input energy parameters at multiple sites and multiple periods. The linear model of coregionalization (LMC) approach is adopted to fit the empirical data; it is observed that the proposed LMC-based function performs reasonably well in capturing the spatial variability of the input energy measures. The influence of regional site conditions on the spatial cross correlation of input energy parameters is also investigated, and generic models are proposed using the averaged standardized coregionalization matrices of 12 events. The spatial cross-correlation models developed for input energy parameters can be used in regional seismic risk assessment within an energy-based framework.
机译:近年来,基于能量的抗震设计方法受到了越来越多的关注,因为它不仅考虑了结构的受力和位移行为,还考虑了地震荷载引起的累积损伤效应。具体来说,作为一个基本参数,输入能量参数(绝对和相对测量)与累积损伤电位直接相关;因此,它们通常用于基于能量的抗震设计和地震风险评估。因此,本研究利用从12次地震事件中选取的2219条地震动记录,提出了新的绝对和相对弹性输入能量参数的空间互相关模型。首先计算绝对和相对测量的标准化事件内残差。然后进行半变异函数分析,以量化多个地点和多个周期的输入能量参数残差的空间相关性。采用共区域化线性模型(LMC)方法对经验数据进行拟合;据观察,所提出的基于LMC的函数在捕捉输入能量度量的空间变异性方面表现得相当好。还研究了区域场地条件对输入能量参数空间互相关的影响,并利用12个事件的平均标准化共区域化矩阵提出了通用模型。为输入能量参数开发的空间互相关模型可在基于能量的框架内用于区域地震风险评估。

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    Southwest Jiaotong Univ Minist Educ Key Lab High Speed Railway Engn Chengdu Peoples R China;

    Tongji Univ Shanghai Inst Disaster Prevent &

    Relief Shanghai Peoples R China;

    Wuhan Univ Inst Engn Risk &

    Disaster Prevent State Key Lab Water Resources &

    Hydropower Engn S Wuhan Peoples R China;

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  • 正文语种 eng
  • 中图分类 地震学;
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