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Article

Computer-Aided Structural Diagnosis of Bridges Using Combinations of Static and Dynamic Tests: A Preliminary Investigation

1
Department of Biosystems Engineering, Poznań University of Life Sciences, Wojska Polskiego 50, 60-627 Poznań, Poland
2
Department of Engineering and Applied Sciences, Università degli Studi di Bergamo, Viale G. Marconi 5, 24044 Dalmine, BG, Italy
*
Author to whom correspondence should be addressed.
Materials 2023, 16(24), 7512; https://doi.org/10.3390/ma16247512
Submission received: 6 November 2023 / Revised: 1 December 2023 / Accepted: 3 December 2023 / Published: 5 December 2023
(This article belongs to the Special Issue Non-Destructive Testing (NDT) of Advanced Composites and Structures)

Abstract

Reinforced concrete bridges deteriorate over time, therefore displaying a regular need for structural assessment and diagnosis. The reasons for their deterioration are often the following: (a) intensive use, (b) very dynamic loads acting for long periods of time, (c) and sometimes chemical processes that damage the concrete or lead to corrosion of the reinforcement. Assuming the hypothesis that both the stiffness of the material and its density change over time, these parameters shall be identified, preferably in a non-destructive way, in different locations of the investigated structure. Such task is expected to be possibly exerted by means of one or more tests, which must not be laborious or cause the bridge to be out of service for a long time. In this paper, an attempt is made to prepare a procedure based on dynamic tests supplemented with several static measurements, in order to identify the largest number of parameters in the shortest possible time, within an inverse analysis methodology. The proposed procedure employs a popular algorithm for minimizing the objective function, i.e., trust region in the least square framework, as part of the inverse analysis, where the difference between measurements made in situ and those calculated numerically is minimized. As a result of the work performed, optimal sets of measurements and test configurations are proposed, allowing the searched parameters to be found in a reliable manner, with the greatest possible precision.
Keywords: concrete bridge; structural diagnosis; inverse analysis; local minimization algorithm; multistart optimization procedure; trust region algorithm; dynamic modal analysis; finite element method concrete bridge; structural diagnosis; inverse analysis; local minimization algorithm; multistart optimization procedure; trust region algorithm; dynamic modal analysis; finite element method

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MDPI and ACS Style

Garbowski, T.; Cornaggia, A.; Zaborowicz, M.; Sowa, S. Computer-Aided Structural Diagnosis of Bridges Using Combinations of Static and Dynamic Tests: A Preliminary Investigation. Materials 2023, 16, 7512. https://doi.org/10.3390/ma16247512

AMA Style

Garbowski T, Cornaggia A, Zaborowicz M, Sowa S. Computer-Aided Structural Diagnosis of Bridges Using Combinations of Static and Dynamic Tests: A Preliminary Investigation. Materials. 2023; 16(24):7512. https://doi.org/10.3390/ma16247512

Chicago/Turabian Style

Garbowski, Tomasz, Aram Cornaggia, Maciej Zaborowicz, and Sławomir Sowa. 2023. "Computer-Aided Structural Diagnosis of Bridges Using Combinations of Static and Dynamic Tests: A Preliminary Investigation" Materials 16, no. 24: 7512. https://doi.org/10.3390/ma16247512

APA Style

Garbowski, T., Cornaggia, A., Zaborowicz, M., & Sowa, S. (2023). Computer-Aided Structural Diagnosis of Bridges Using Combinations of Static and Dynamic Tests: A Preliminary Investigation. Materials, 16(24), 7512. https://doi.org/10.3390/ma16247512

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