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Enhanced Synergic Identification of Prestress Force and Moving Force in Prestressed Concrete Bridges

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dc.contributor.author Jeyamohan, K.
dc.contributor.author Chan, T.H.T
dc.contributor.author Nguyen, K.D.
dc.contributor.author Thambiratnam, D.P.
dc.date.accessioned 2023-11-09T07:24:22Z
dc.date.available 2023-11-09T07:24:22Z
dc.date.issued 2023
dc.identifier.citation Kunaratnam Jeyamohan, Tommy.H.T. Chan, Khac-Duy Nguyen and David P. Thambiratnam, “Enhanced Synergic Identification of Prestress Force and Moving Force in Prestressed Concrete Bridges”, Technology Convergence 2023. https://www.techconverge23.org/_files/ugd/5eb250_2fba7b7b61be43379fea7317e27f803c.pdf en_US
dc.identifier.uri http://repo.lib.jfn.ac.lk/ujrr/handle/123456789/9904
dc.description.abstract The estimation and monitoring of the in-service load carrying capacity of prestressed concrete bridge (PCB) structures hold significant importance, especially due to prestress losses occurring with their aging. Therefore, it becomes crucial to develop an effective methodology that requires fewer measurements, enabling the estimation of existing prestress force (PF) and moving force (MF) without relying on detailed knowledge of vehicle characteristics and the prestress bridge-vehicle interaction system. This study proposes an improved methodology for identifying PF and MF synergistically. This approach incorporates displacement measurements and integrates a load shape function (LSF) approach alongside the virtual distortion method. The identification process is improved by adopting a truncation coefficient for LSF, which eliminates ineffective elements and enhances reliability. The proposed improvement technique demonstrates commendable accuracy and facilitates timely maintenance of PCBs. As a result of adopting this approach, engineers and practitioners can assess and monitor the load carrying capacity of PCBs. Consequently, these essential transportation infrastructures can be ensured to be safe and durable for the foreseeable future. en_US
dc.language.iso en en_US
dc.publisher Technology Convergence 2023 (ISWIM and HVTT) en_US
dc.subject Prestressed Concrete Bridges en_US
dc.subject Moving Force Identification en_US
dc.subject Prestress Force Identification en_US
dc.subject Load Shape Function en_US
dc.subject Truncated Load Shape Function en_US
dc.subject Load Carrying Capacity en_US
dc.title Enhanced Synergic Identification of Prestress Force and Moving Force in Prestressed Concrete Bridges en_US
dc.type Article en_US


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