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Influential curved steel bridge fragility analysis parameters

  • Junwon Seo
  • , Daniel G. Linzell

Producción científica: Conference contributionrevisión exhaustiva

5 Citas (Scopus)

Resumen

Past earthquakes have highlighted the susceptibility of curved steel girder bridges to damage from seismic events in the United States. One major part of a regional vulnerability assessment of these bridges could be the completion of sensitivity analyses that assist with identifying their influential seismic response parameters. In this study, an available inventory of curved steel girder bridges was used as a basis to establish statistical characteristics for a sensitivity study. 3D finite element models were employed to capture critical seismic response information. In this study, statistical tools, including the Plackett-Burman, Pareto and Prediction profiler methods, were implemented to determine critical parameters. This paper presents the sample results for tangential bearing translations, which are one of the critical response parameters. The results revealed that, although the relative significance of the different seismic response input parameters may change for a given seismic response output variable; the same parameters, including span number, maximum span length, radius of curvature, girder spacing, and cross-frame spacing, were typically the most significant.

Idioma originalEnglish
Título de la publicación alojadaForensic Engineering 2012
Subtítulo de la publicación alojadaGateway to a Better Tomorrow - Proceedings of the 6th Congress on Forensic Engineering
Páginas84-92
Número de páginas9
DOI
EstadoPublished - 2013
Evento6th Congress on Forensic Engineering 2012: Gateway to a Better Tomorrow - San Francisco, CA, United States
Duración: oct 31 2012nov 3 2012

Serie de la publicación

NombreForensic Engineering 2012: Gateway to a Better Tomorrow - Proceedings of the 6th Congress on Forensic Engineering

Conference

Conference6th Congress on Forensic Engineering 2012: Gateway to a Better Tomorrow
País/TerritorioUnited States
CiudadSan Francisco, CA
Período10/31/1211/3/12

ASJC Scopus subject areas

  • Biomedical Engineering

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