Seismic soil–culvert interaction

Author:

Abuhajar Osama12,El Naggar Hesham1,Newson Tim1

Affiliation:

1. Geotechnical Research Centre, Department of Civil and Environmental Engineering, Western University, London, ON N6A 5B9, Canada.

2. Department of Civil Engineering, University of Benghazi, Benghazi, Libya.

Abstract

Box culverts may be constructed in active seismic areas, where ground shaking or ground failures can impose considerable earth pressures on them. In this study, the seismic response of box culverts was investigated experimentally and numerically. A series of scaled centrifuge tests was performed and subjected to three different earthquake signals, with different amplitudes and frequencies. Two values of culvert wall thickness and two values of sand relative density were considered in the experimental program. Experimental results are presented in terms of comparisons of seismic bending moments. These results were used to calibrate and verify two-dimensional numerical models developed using the computer program FLAC. The verified models were then used to investigate the effect of earthquake intensity and frequency, height of soil cover, and culvert thickness on the seismic bending moments for the different culvert sections. Based on the analysis results, charts are presented to aid in the seismic design of box culverts.

Publisher

Canadian Science Publishing

Subject

Civil and Structural Engineering,Geotechnical Engineering and Engineering Geology

Reference17 articles.

1. AASHTO. 2007. AASHTO LRFD bridge design specifications. American Association of State Highway and Transportation Officials, Inc. (AASHTO), Washington, D.C.

2. Abuhajar, O.S. 2013. Static and seismic soil culvert interaction, Ph.D. dissertation, Department of Civil and Environmental Engineering, The University of Western Ontario, London, Ont.

3. Static soil culvert interaction the effect of box culvert geometric configurations and soil properties

4. Scaled physical and numerical modelling of static soil pressures on box culverts

5. ASTM. 2011. Standard practice for classification of soils for engineering purposes (Unified Soil Classification System). ASTM standard D2487. American Society for Testing and Materials, West Conshohocken, Pa. 10.1520/D2487-11.

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