Seismic Performance of Substandard Reinforced Concrete Bridge Columns Under Subduction-Zone Ground Motions

Seismic Performance of Substandard Reinforced Concrete Bridge Columns Under Subduction-Zone Ground Motions
Author:
Publisher:
Total Pages: 234
Release: 2019
Genre: Bridges
ISBN:


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A large magnitude, long duration subduction earthquake is impending in the Pacific Northwest, which lies near the Cascadia Subduction Zone (CSZ). Great subduction zone earthquakes are the largest earthquakes in the world and are the sole source zones that can produce earthquakes greater than M8.5. Additionally, the increased duration of a CSZ earthquake may result in more structural damage than expected. Given such seismic hazard, the assessment of reinforced concrete substructures has become crucial in order to prioritize the bridges that may need to be retrofitted and to maintain the highway network operable after a major seismic event. Recent long duration subduction earthquakes occurred in Maule, Chile (Mw 8.8, 2010) and Tohoku, Japan (Mw 9.0, 2011) are a reminder of the importance of studying the effect of subduction ground motions on structural performance. For this purpose, the seismic performance of substandard circular reinforced concrete bridge columns was experimentally evaluated using shake table tests by comparing the column response from crustal and subduction ground motions. Three continuous reinforced columns and three lap-spliced columns were tested using records from 1989 Loma Prieta, 2010 Maule and 2011 Tohoku. The results of the large-scale experiments and numerical studies demonstrated that the increased duration of subduction ground motions affects the displacement capacity and can influence the failure mode of bridge columns. Furthermore, more damage was recorded under the subduction ground motions as compared to similar maximum deformations under the crustal ground motion. Therefore, it is recommended to consider the effects of subduction zone earthquakes in the performance assessment of substandard bridges, or when choosing ground motions for nonlinear time-history analysis, especially in regions prone to subduction zone mega earthquakes.


Seismic Performance of Substandard Reinforced Concrete Bridge Columns Under Subduction-Zone Ground Motions
Language: en
Pages: 234
Authors:
Categories: Bridges
Type: BOOK - Published: 2019 - Publisher:

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A large magnitude, long duration subduction earthquake is impending in the Pacific Northwest, which lies near the Cascadia Subduction Zone (CSZ). Great subducti
Performance of Circular Reinforced Concrete Bridge Columns Under Bidirectional Earthquake Loading
Language: en
Pages: 496
Authors: Mahmoud M. Hachem
Categories: Bridges, Concrete
Type: BOOK - Published: 2003 - Publisher:

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Describes the dynamic testing of 4 circular reinforced concrete bridge columns. The specimens were divided into 2 pairs, with each pair subjected to a different
Seismic Performance of Circular Reinforced Concrete Bridge Columns Under Bidirectional Earthquake Loading
Language: en
Pages: 570
Authors: Mahmoud Mohamad Hachem
Categories:
Type: BOOK - Published: 2002 - Publisher:

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Experimental Characterization of Steel Jacket Retrofitted Reinforced Concrete Bridge Column Behavior in Cascadia Subduction Zone Earthquakes
Language: en
Pages: 139
Authors: Sean McGuiness
Categories: Bridges
Type: BOOK - Published: 2021 - Publisher:

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Research on seismic retrofitting of Reinforced Concrete (RC) bridge columns in the United States (U.S.) was motivated by damage observed following the 1971 San
Behavior of Carbon Fiber Reinforced Polymer Jacket Retrofitted Reinforced Concrete Bridge Columns in Cascadia Subduction Zone Earthquakes
Language: en
Pages: 0
Authors: William Nickelson
Categories: Bridges
Type: BOOK - Published: 2022 - Publisher:

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Bridges built before the early 1970s contain seismic vulnerabilities not accounted for in older design codes. Retrofitting with carbon fiber reinforced polymer