- Modelling of monopile-footing foundation system for offshore structures in cohesionless soils
- R.J. Goodey ; R.N. Taylor ; M. El-Marassi ; T.A. Newson ; M. Vaziri ; K.J.L. Stone ; H.S. Arshi
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Numerical & Constitutive Modeling ; Pile Foundations ; Offshore Geotechnics
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- Kerisel Lecture - The role of Geotechnical Engineers in saving monuments and historic sites
- G. Calabresi ;
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Foundation Design / Construction
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- Cyclic axial load tests on bored piles in dense sands
- Kouby Le ; A. Puech ; O. Benzaria
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations
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- Cyclic axial load tests on bored piles in overconsolidated Flanders clay
- Kouby Le ; A. Puech ; O. Benzaria
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Site Characterization & In-situ Testing (General)
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- Equilibrium models for arching in basal reinforced piled embankments
- A. Bezuijen ; S.J.M. Eekelen-van
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Road Embankments ; Stabilization ; Numerical & Constitutive Modeling
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- Discussions about the bearing capacity of geothermal piles
- J. Habert ; S. Burlon ; H. Mroueh ; M. Suryatriyastuti
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Geothermal
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- Deformation behavior of single pile in silt under long-term cyclic axial loading
- Y.M. Chen ; B. Zhu ; Y. Ren ; R.P. Chen
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Laboratory Testing
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- Field Investgation of a geothermal energy pile: Initial Observations
- S. Baycan ; G. Chapman ; C. Haberfield ; D. Barry-Macaulay ; R.M. Singh ; A. Bouazza ; B. Wang
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Site Characterization & In-situ Testing (General) ; Geothermal ; Energy Geotechnics ; Pile Foundations
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- Plugging Effect of Open-Ended Displacement Piles
- H.-G. Kempfert ; J. Lüking
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Foundation Design / Construction
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- Cyclic stability diagrams for piles in sands
- R. Jardine ; M. Silva ; P. Foray ; J. Garnier ; L. Thorel ; O. Benzaria ; A. Puech
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations
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- Displacement response to axial cyclic loading of driven piles in sand
- J. Standing ; R. Jardine ; S. Rimoy
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations ; Offshore Geotechnics
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- Experimental Testing of Monopiles in Sand Subjected to One-Way Long-Term Cyclic Lateral Loading
- L.V. Andersen ; L.B. Ibsen ; H.R. Roesen
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations
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- Pile cyclic lateral loading: Development of degradation laws for describing the cyclic effect
- N. Chenaf ; J. Garnier ; L. Thorel ; F. Rosquoët
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Pile Foundations
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- Influence of cyclic axial loads in the behaviour and response of driven piles in sand
- Z. Yang ; C. Tsuha ; R. Jardine ; S. Rimoy ; P. Foray ; M. Silva
- Proceedings of the 18th International Conference on Soil Mechanics and Geotechnical Engineering, Paris, September 2-6 2013
- Year: 2013
- Site Response Analysis ; Pile Foundations
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- Large Diameter Long Bored Piles in the Mekong Delta
- Bengt H. Fellenius ; Nguyen Minh Hai
- Book Title / Journal: International Journal of Geoengineering Case Histories
- Year: 2013 , Volume: 2
- Pile Foundations ; Site Characterization & In-situ Testing (General)
- Keywords: Mekong Delta ; O-cell test ; strain-gage evaluation ; Bored piles ; shaft resistance ; Settlement ; beta coefficient
- Abstract
Static loading tests, O-cell tests, were performed on two long, strain-gage instrumented, bored piles in HoChiMinh City, Vietnam, where a series of twelve apartment towers were to be constructed. The test piles were constructed to 76 and 91 m depth and tested to maximum O-cell loads of 10 and 18 MN, respectively. For both piles, the O-cell level was placed at a depth of about 20 % of the pile length above the pile toe. The soil profile consisted of very soft organic clay to about 10 to 15 m depth underlain by firm to stiff clayey soil to about 25 to 45 m depth. Hereunder, the soil consisted of a compact to dense sandy silt. Neither of the tests was able to fully engage the shaft resistance of the piles above the O-cell level, but did so below the O-cell level. Back-calculation of the load distributions determined from the strain-gage measurements showed the shaft resistance, even where fully mobilized, to be very small: the beta-coefficient applied in an effective stress analysis was only about 0.13 to 0.14. The evaluations of shaft resistance development showed a maximum shear resistance to occur after a movement of only 3 to 4 mm, after which the response became plastic and strain-softening. The toe resistance was very low because the construction had left soil debris at the bottom of the drilled hole. Ongoing regional settlement leads to concerns about the possibility for the production piles to have a similarly low toe resistance. This would locate the neutral plane of the shorter piles in settling soil and create a downdrag situation for the piled foundation. PDF |