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    Capturing Spatiotemporal Progression of Corrosion to Estimate Life-Cycle Seismic Resilience of RC Bridges

    Source: ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering:;2024:;Volume ( 010 ):;issue: 001::page 04023064-1
    Author:
    B Sharanbaswa Vishwanath
    ,
    Swagata Banerjee
    DOI: 10.1061/AJRUA6.RUENG-1109
    Publisher: ASCE
    Abstract: Corrosion is a major threat to RC bridges for their lifelong safety and sustainability. This article investigates the spatiotemporal progression of corrosion degradation in piers of a RC bridge and estimates its impact on life-cycle seismic resilience of the bridge. Spatial randomness of corrosion and concrete parameters along the length and periphery of piers were generated through the spectral representation method. Generated random fields were integrated with the multiphysics phenomena of corrosion in the COMSOL Multiphysics platform for a realistic simulation of corrosion propagation on rebars in bridge piers. Obtained information was then inserted to the finite-element model of the bridge composed of all essential features to accurately capture this gradual degradation for seismic performance assessment of the bridge in a life-cycle context. In this performance simulation, the study considered both spatial and nonspatial corrosion strategies in the presence and absence of early-age surface cracks and estimated the variation in measured seismic resilience of the bridge for various corrosion strategies. Results depict significant overestimation of seismic resilience of the bridge along its life span if the spatial nature of corrosion is ignored, and thus highlights the importance of considering the same for seismic response analysis of aging bridges.
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      Capturing Spatiotemporal Progression of Corrosion to Estimate Life-Cycle Seismic Resilience of RC Bridges

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4296435
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    • ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering

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    contributor authorB Sharanbaswa Vishwanath
    contributor authorSwagata Banerjee
    date accessioned2024-04-27T22:20:19Z
    date available2024-04-27T22:20:19Z
    date issued2024/03/01
    identifier other10.1061-AJRUA6.RUENG-1109.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4296435
    description abstractCorrosion is a major threat to RC bridges for their lifelong safety and sustainability. This article investigates the spatiotemporal progression of corrosion degradation in piers of a RC bridge and estimates its impact on life-cycle seismic resilience of the bridge. Spatial randomness of corrosion and concrete parameters along the length and periphery of piers were generated through the spectral representation method. Generated random fields were integrated with the multiphysics phenomena of corrosion in the COMSOL Multiphysics platform for a realistic simulation of corrosion propagation on rebars in bridge piers. Obtained information was then inserted to the finite-element model of the bridge composed of all essential features to accurately capture this gradual degradation for seismic performance assessment of the bridge in a life-cycle context. In this performance simulation, the study considered both spatial and nonspatial corrosion strategies in the presence and absence of early-age surface cracks and estimated the variation in measured seismic resilience of the bridge for various corrosion strategies. Results depict significant overestimation of seismic resilience of the bridge along its life span if the spatial nature of corrosion is ignored, and thus highlights the importance of considering the same for seismic response analysis of aging bridges.
    publisherASCE
    titleCapturing Spatiotemporal Progression of Corrosion to Estimate Life-Cycle Seismic Resilience of RC Bridges
    typeJournal Article
    journal volume10
    journal issue1
    journal titleASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering
    identifier doi10.1061/AJRUA6.RUENG-1109
    journal fristpage04023064-1
    journal lastpage04023064-17
    page17
    treeASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering:;2024:;Volume ( 010 ):;issue: 001
    contenttypeFulltext
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