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Bearing Capacity of Circular Footing on c-ϕ Slope
The paper presents a new investigation on the bearing capacity of a circular footing on a c–φ slope using a commercial finite element code, namely Plaxis. The effects of design parameters, including soil strengths, slope angle, the distance between footing, and slope on the bearing capacity of the circular footing, are investigated. The obtained results are verified with previous researches. A well agreement between the predictions from the present study and the previous results is achieved. Furthermore, the failure mechanisms considering the impact of the investigated parameters are also determined. The obtained results are presented in the form of design charts and tables, allowing practitioners to predict the bearing capacity of circular footing on c–φ slopes.
Bearing Capacity of Circular Footing on c-ϕ Slope
The paper presents a new investigation on the bearing capacity of a circular footing on a c–φ slope using a commercial finite element code, namely Plaxis. The effects of design parameters, including soil strengths, slope angle, the distance between footing, and slope on the bearing capacity of the circular footing, are investigated. The obtained results are verified with previous researches. A well agreement between the predictions from the present study and the previous results is achieved. Furthermore, the failure mechanisms considering the impact of the investigated parameters are also determined. The obtained results are presented in the form of design charts and tables, allowing practitioners to predict the bearing capacity of circular footing on c–φ slopes.
Bearing Capacity of Circular Footing on c-ϕ Slope
Lecture Notes in Civil Engineering
Duc Long, Phung (editor) / Dung, Nguyen Tien (editor) / Tran, Minh Nhat (author) / Boonyatee, Tirawat (author) / Le, Anh Tuan (author) / Lai, Van Qui (author)
International Conference on Geotechnics for Sustainable Infrastructure Development ; 2023 ; Hanoi, Vietnam
Proceedings of the 5th International Conference on Geotechnics for Sustainable Infrastructure Development ; Chapter: 193 ; 2789-2798
2024-07-11
10 pages
Article/Chapter (Book)
Electronic Resource
English
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