Overview and introduction to development of non-ergodic earthquake ground-motion models

被引:0
|
作者
Grigorios Lavrentiadis
Norman A. Abrahamson
Kuehn M. Nicolas
Yousef Bozorgnia
Christine A. Goulet
Anže Babič
Jorge Macedo
Matjaž Dolšek
Nicholas Gregor
Albert R. Kottke
Maxime Lacour
Chenying Liu
Xiaofeng Meng
Van-Bang Phung
Chih-Hsuan Sung
Melanie Walling
机构
[1] Garrick Institute for the Risk Sciences University of California,Natural Hazards Risk and Resiliency Research Center (NHR3)
[2] University of California,Department of Civil Engineering
[3] Berkeley,Natural Hazards Risk and Resiliency Research Center (NHR3)
[4] Garrick Institute for the Risk Sciences University of California,Southern California Earthquake Center
[5] University of Southern California,Faculty of Civil and Geodetic Engineering
[6] University of Ljubljana,School of Civil and Environmental Engineering
[7] Georgia Institute of Technology,Department of Civil and Environmental Engineering
[8] Geosciences Pacific Gas and Electric Co.,Department of Civil and Environmental Engineering
[9] University of California,Performance
[10] Berkeley,Based Risk Assessment
[11] University of California,undefined
[12] Berkeley,undefined
[13] GeoEngineers,undefined
[14] Inc.,undefined
来源
关键词
Probabilistic seismic hazard analysis; Non-ergodic ground-motion model; Gaussian process regression;
D O I
暂无
中图分类号
学科分类号
摘要
This paper provides an overview and introduction to the development of non-ergodic ground-motion models, GMMs. It is intended for a reader who is familiar with the standard approach for developing ergodic GMMs. It starts with a brief summary of the development of ergodic GMMs and then describes different methods that are used in the development of non-ergodic GMMs with an emphasis on Gaussian process (GP) regression, as that is currently the method preferred by most researchers contributing to this special issue. Non-ergodic modeling requires the definition of locations for the source and site characterizing the systematic source and site effects; the non-ergodic domain is divided into cells for describing the systematic path effects. Modeling the cell-specific anelastic attenuation as a GP, and considerations on constraints for extrapolation of the non-ergodic GMMs are also discussed. An updated unifying notation for non-ergodic GMMs is also presented, which has been adopted by the authors of this issue.
引用
收藏
页码:5121 / 5150
页数:29
相关论文
共 50 条
  • [1] Overview and introduction to development of non-ergodic earthquake ground-motion models
    Lavrentiadis, Grigorios
    Abrahamson, Norman A.
    Nicolas, Kuehn M.
    Bozorgnia, Yousef
    Goulet, Christine A.
    Babic, Anze
    Macedo, Jorge
    Dolsek, Matjaz
    Gregor, Nicholas
    Kottke, Albert R.
    Lacour, Maxime
    Liu, Chenying
    Meng, Xiaofeng
    Phung, Van-Bang
    Sung, Chih-Hsuan
    Walling, Melanie
    BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (11) : 5121 - 5150
  • [2] Development and Verification of Non-Ergodic Ground-Motion Methodologies and Modeling Tools
    Lavrentiadis, Grigorios
    Seylabi, Elnaz
    Kuehn, Nicolas M.
    Meng, Xiaofeng
    Kottke, Albert R.
    Bozorgnia, Yousef
    Goulet, Christine A.
    GEO-CONGRESS 2023: GEOTECHNICS OF NATURAL HAZARDS, 2023, 338 : 373 - 383
  • [3] Efficient non-ergodic ground-motion prediction for large datasets
    Maxime Lacour
    Bulletin of Earthquake Engineering, 2023, 21 : 5209 - 5232
  • [4] Efficient non-ergodic ground-motion prediction for large datasets
    Lacour, Maxime
    BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (11) : 5209 - 5232
  • [5] A non-ergodic effective amplitude ground-motion model for California
    Grigorios Lavrentiadis
    Norman A. Abrahamson
    Nicolas M. Kuehn
    Bulletin of Earthquake Engineering, 2023, 21 : 5233 - 5264
  • [6] A non-ergodic effective amplitude ground-motion model for California
    Lavrentiadis, Grigorios
    Abrahamson, Norman A.
    Kuehn, Nicolas M.
    BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (11) : 5233 - 5264
  • [7] Special issue of the bulletin of earthquake engineering on non-ergodic ground motion models
    Bozorgnia, Yousef
    Goulet, Christine
    Macedo, Jorge
    BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (11) : 5119 - 5120
  • [8] Special issue of the bulletin of earthquake engineering on non-ergodic ground motion models
    Yousef Bozorgnia
    Christine Goulet
    Jorge Macedo
    Bulletin of Earthquake Engineering, 2023, 21 : 5119 - 5120
  • [9] A non-ergodic ground-motion model of Fourier amplitude spectra for France
    Chih-Hsuan Sung
    Norman A. Abrahamson
    Nicolas M. Kuehn
    Paola Traversa
    Irmela Zentner
    Bulletin of Earthquake Engineering, 2023, 21 : 5293 - 5317
  • [10] A non-ergodic ground-motion model of Fourier amplitude spectra for France
    Sung, Chih-Hsuan
    Abrahamson, Norman A.
    Kuehn, Nicolas M.
    Traversa, Paola
    Zentner, Irmela
    BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (11) : 5293 - 5317