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Effect of live loads on top slab of cast-in-place reinforced concrete box culverts

Producción científica: Articlerevisión exhaustiva

5 Citas (Scopus)

Resumen

Reinforced concrete box culverts (RCBCs) designed according to old codes, using lighter truck weights (e.g., H15), may require posting when rated for current design and permit vehicles. When load ratings are calculated based on current AASHTO Specifications, they can be negatively affected by the conservative live-load attenuation through soil fill. This study evaluates the positive bending strains induced by live-load distribution through soil fill when load rating cast-in-place (CIP) RCBCs. Eighteen (18) single and multicell RCBCs in Kentucky were load tested and the effects of truck live loads analyzed. Fill heights, HF, varied from 0 m (0 ft) to 3.57 m (11.7 ft), clear cell spans, S, from 3.05 m (10.0 ft) to 6.71 m (22.0 ft), and culvert spans from 6.71 m (22.0 ft) to 18.59 m (61.0 ft). Field data were collected using strain gauges attached to the interior surfaces of culverts. Irrespective of how many cells the RCBCs had, strain variations with fill height in the top slabs were similar. At fill heights greater than 3.05 m (10.0 ft), maximum strains in the top slabs measured less than 10 microstrain, a value at which live-load effects are considered negligible. Combining live-load strains measured on the Kentucky culverts with ones from field tests in Missouri and Louisiana, a live-load tensile strain envelope is proposed to load rate the top slabs of RCBCs for positive bending when cell spans are less than 4.6 m (15.0 ft).

Idioma originalEnglish
Número de artículo118709
PublicaciónEngineering Structures
Volumen318
DOI
EstadoPublished - nov 1 2024

Nota bibliográfica

Publisher Copyright:
© 2024 Elsevier Ltd

Financiación

Funding for the project was provided by the Federal Highway Administration (FHWA) and the Kentucky Transportation Cabinet (KYTC) through grant FRT 198. The authors are grateful for the guidance provided by Mr. Josh Rogers, Ms. Erin Van Zee, and Ms. Dora Alexander with the KYTC. The experimental testing would not have been possible without the assistance of numerous KYTC personnel that gave access to the culverts, provided, and drove the trucks, and carried out traffic control during the load tests. The assistance of Dr. Charlie Sun with the load testing is also very much appreciated. The authors are extremely grateful to Dr. Chris Van Dyke for assisting with the load testing as well as reviewing the manuscript.

FinanciadoresNúmero del financiador
Federal Highway Administration
Kentucky Transportation CabinetFRT 198
Kentucky Transportation Cabinet

    ASJC Scopus subject areas

    • Civil and Structural Engineering

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