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dc.contributor.authorKoo, K-Y
dc.contributor.authorYi, J-H
dc.date.accessioned2016-11-15T14:32:57Z
dc.date.issued2015
dc.description.abstractThis study proposes a novel substructural identification method based on the Bernoulli-Euler beam theory with a single variable optimization scheme to estimate the flexural rigidity of a beam-like structure such as a bridge deck, which is one of the major structural integrity indices of a structure. In ordinary bridges, the boundary condition of a superstructure can be significantly altered by aging and environmental variations, and the actual boundary conditions are generally unknown or difficult to be estimated correctly. To efficiently bypass the problems related to boundary conditions, a substructural identification method is proposed to evaluate the flexural rigidity regardless of the actual boundary conditions by isolating an identification region within the internal substructure. The proposed method is very simple and effective as it utilizes the single variable optimization based on the transfer function formulated utilizing Bernoulli Euler beam theory for the inverse analysis to obtain the flexural rigidity. This novel method is also rigorously investigated by applying it for estimating the flexural rigidity of a simply supported beam model with different boundary conditions, a concrete plate-girder bridge model with different length of an internal substructure, a cantilever-type wind turbine tower structure with different type of excitation, and a steel box-girder bridge model with internal structural damages.en_GB
dc.description.sponsorshipThis research was financially supported by the Ministry of Land, Infrastructure and Transport (MOLIT) of the Korea government (code 12 Technology Innovation E09).en_GB
dc.identifier.citationVol. 2015, Article: 726410en_GB
dc.identifier.doi10.1155/2015/726410
dc.identifier.urihttp://hdl.handle.net/10871/24436
dc.language.isoenen_GB
dc.publisherHindawi Publishing Corporationen_GB
dc.rightsThis is the final version of an open access article, available from Hindawi via the DOI in this record. Distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. https://creativecommons.org/licenses/by/3.0/en_GB
dc.titleSubstructural Identification of Flexural Rigidity for Beam-Like Structuresen_GB
dc.typeArticleen_GB
dc.date.available2016-11-15T14:32:57Z
dc.identifier.issn1070-9622
dc.identifier.eissn1875-9203
dc.identifier.journalShock and Vibrationen_GB


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