Journal Article
Overview and introduction to development of non-ergodic earthquake ground-motion models
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
Bulletin of Earthquake Engineering · Vol. 21, Issue 11 · pp. 5121-5150 · 2023
Abstract
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.
Bibliographic Information
| Journal | Bulletin of Earthquake Engineering |
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| Publisher | Springer |
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| Publication Date | 2023-09-01 |
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| Publication Year | 2023 |
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| Volume | 21 |
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| Issue | 11 |
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| Pages | 5121-5150 |
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| Document Type | Journal Article |
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| Print ISSN | 1570-761X |
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| eISSN | 1573-1456 |
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| DOI | 10.1007/s10518-022-01485-x |
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