Estimating flexural reliability of carbonated RC bridge beams using particle filter
Many of our reinforced concrete structures today are ageing at the same time subjected to carbonation. It occurs when atmospheric carbon dioxide reacts with the components of the hydrated cement. In this regard, the authors estimated the probability of flexural failure of a deteriorated reinforced c...
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oai:animorepository.dlsu.edu.ph:faculty_research-35092021-09-02T08:52:38Z Estimating flexural reliability of carbonated RC bridge beams using particle filter Sanchez, Jonathan Jarder, Samantha Louise de Ocampo, Nestor Teruel, Allen Garciano, Lessandro Estelito O. Many of our reinforced concrete structures today are ageing at the same time subjected to carbonation. It occurs when atmospheric carbon dioxide reacts with the components of the hydrated cement. In this regard, the authors estimated the probability of flexural failure of a deteriorated reinforced concrete (RC) beams subjected to carbonation. In the reliability analysis, the resistance degrades over time due to a change in the concrete compressive strength caused by carbonation. The load was modeled as a uniformly distributed on a simply supported beam. The results of the Monte Carlo simulation of an example bridge showed a decrease in the compressive strength due to carbonation. To estimate the present state of the RC beams, particle filter was used in conjunction with observation data from rebound hammer tests on the bridge. © Int. J. of GEOMATE. 2017-08-01T07:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/faculty_research/2510 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=3509&context=faculty_research Faculty Research Work Animo Repository Concrete beams—Testing Concrete bridges—Reliability Monte Carlo method Civil Engineering |
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Concrete beams—Testing Concrete bridges—Reliability Monte Carlo method Civil Engineering Sanchez, Jonathan Jarder, Samantha Louise de Ocampo, Nestor Teruel, Allen Garciano, Lessandro Estelito O. Estimating flexural reliability of carbonated RC bridge beams using particle filter |
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Many of our reinforced concrete structures today are ageing at the same time subjected to carbonation. It occurs when atmospheric carbon dioxide reacts with the components of the hydrated cement. In this regard, the authors estimated the probability of flexural failure of a deteriorated reinforced concrete (RC) beams subjected to carbonation. In the reliability analysis, the resistance degrades over time due to a change in the concrete compressive strength caused by carbonation. The load was modeled as a uniformly distributed on a simply supported beam. The results of the Monte Carlo simulation of an example bridge showed a decrease in the compressive strength due to carbonation. To estimate the present state of the RC beams, particle filter was used in conjunction with observation data from rebound hammer tests on the bridge. © Int. J. of GEOMATE. |
format |
text |
author |
Sanchez, Jonathan Jarder, Samantha Louise de Ocampo, Nestor Teruel, Allen Garciano, Lessandro Estelito O. |
author_facet |
Sanchez, Jonathan Jarder, Samantha Louise de Ocampo, Nestor Teruel, Allen Garciano, Lessandro Estelito O. |
author_sort |
Sanchez, Jonathan |
title |
Estimating flexural reliability of carbonated RC bridge beams using particle filter |
title_short |
Estimating flexural reliability of carbonated RC bridge beams using particle filter |
title_full |
Estimating flexural reliability of carbonated RC bridge beams using particle filter |
title_fullStr |
Estimating flexural reliability of carbonated RC bridge beams using particle filter |
title_full_unstemmed |
Estimating flexural reliability of carbonated RC bridge beams using particle filter |
title_sort |
estimating flexural reliability of carbonated rc bridge beams using particle filter |
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Animo Repository |
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2017 |
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https://animorepository.dlsu.edu.ph/faculty_research/2510 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=3509&context=faculty_research |
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