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Published in: International Journal of Geosynthetics and Ground Engineering 3/2021

01-09-2021 | Original Paper

Bearing Capacity of Stone Column Reinforced Foundation Subjected to Inclined Loadings

Authors: Kok Shien Ng, Juliana Idrus, Yee Ming Chew

Published in: International Journal of Geosynthetics and Ground Engineering | Issue 3/2021

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Abstract

This paper presents a numerical study of the effect of concentric inclined loading on the undrained bearing capacity of stone column group. The stone columns are arranged in a group of four columns with toe sitting on a hard stratum. A rigid square footing is placed on top of the stone columns. The soft soils and the stone columns are modelled as linear-elastic perfectly plastic material with non-associated flow rule. In this study, the area replacement ratio varies from 0.2 to 0.5 and the load inclination angle varies from 0° to 45°. The numerical results are first compared with the limit analysis for both non-reinforced foundation and a stone column reinforced foundation under vertical load. Subsequently, an analysis is carried out for cases with inclined load. Based on the results, a prediction equation is developed to estimate the modified bearing capacity factor for stone columns with inclined loads. The effect of embedment depth on bearing capacity is also investigated. The failure mechanism for stone column group is identified and found to extend deeper and larger compared to non-reinforced foundation. The inclined load has caused the failure surface to be altered and tilted.

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Literature
1.
go back to reference Tan SA, Ng KS, Sun J (2014) Column group analyses for stone column reinforced foundation. In: From soil behavior fundamentals to innovations in geotechnical engineering: honoring Roy E. Olson, pp 597–608 Tan SA, Ng KS, Sun J (2014) Column group analyses for stone column reinforced foundation. In: From soil behavior fundamentals to innovations in geotechnical engineering: honoring Roy E. Olson, pp 597–608
2.
go back to reference Ng KS, Tan SA, Sun J (2014) A new approach to the estimation of settlement and ultimate bearing capacity of stone columns supported shallow foundation. In: The 8th European conference on numerical methods in geotechnical engineering (NUMGE 2014), pp 18–20 Ng KS, Tan SA, Sun J (2014) A new approach to the estimation of settlement and ultimate bearing capacity of stone columns supported shallow foundation. In: The 8th European conference on numerical methods in geotechnical engineering (NUMGE 2014), pp 18–20
3.
go back to reference Nazari Afshar J, Ghazavi M (2014) A simple analytical method for calculation of bearing capacity of stone-column. Int J Civil Eng 12(1):15–25 Nazari Afshar J, Ghazavi M (2014) A simple analytical method for calculation of bearing capacity of stone-column. Int J Civil Eng 12(1):15–25
4.
go back to reference Das M, Dey AK (2018) Prediction of bearing capacity of stone columns placed in soft clay using ANN model. Geotech Geol Eng 36(3):1845–1861CrossRef Das M, Dey AK (2018) Prediction of bearing capacity of stone columns placed in soft clay using ANN model. Geotech Geol Eng 36(3):1845–1861CrossRef
5.
go back to reference Madhav MR, Vitkar PP (1978) Strip footing on weak clay stabilized with a granular trench or pile. Can Geotech J 15(4):605–609CrossRef Madhav MR, Vitkar PP (1978) Strip footing on weak clay stabilized with a granular trench or pile. Can Geotech J 15(4):605–609CrossRef
6.
go back to reference Etezad M, Hanna AM, Ayadat T (2015) Bearing capacity of a group of stone columns in soft soil. Int J Geomech 15(2):04014043CrossRef Etezad M, Hanna AM, Ayadat T (2015) Bearing capacity of a group of stone columns in soft soil. Int J Geomech 15(2):04014043CrossRef
7.
go back to reference Greenwood DA (1970) Mechanical improvement of soils below ground surface. In: Conference on ground engineering, Institution of Civil Engineering, pp 11–22 Greenwood DA (1970) Mechanical improvement of soils below ground surface. In: Conference on ground engineering, Institution of Civil Engineering, pp 11–22
8.
go back to reference Vesic AS (1972) Expansion of cavities in infinite soil mas. J Soil Mech Found Div 98(3):265–290CrossRef Vesic AS (1972) Expansion of cavities in infinite soil mas. J Soil Mech Found Div 98(3):265–290CrossRef
9.
go back to reference Brauns J (1978) Initial bearing capacity of stone columns and sand piles. In: Proceedings symposium soil reinforcing and stabilizing techniques in engineering practice, Sydney, vol 1, pp 497–512 Brauns J (1978) Initial bearing capacity of stone columns and sand piles. In: Proceedings symposium soil reinforcing and stabilizing techniques in engineering practice, Sydney, vol 1, pp 497–512
10.
go back to reference Van Impe WF, Madhav MR, Vandercruyssen JP (1997) Considerations in stone column design. Ground improvement geosystems: densification and reinforcement: In: Proceedings of the third international conference on ground improvement geosystems, London, pp 190–196 Van Impe WF, Madhav MR, Vandercruyssen JP (1997) Considerations in stone column design. Ground improvement geosystems: densification and reinforcement: In: Proceedings of the third international conference on ground improvement geosystems, London, pp 190–196
11.
go back to reference Wissmann KJ (1999) Bearing capacity of Geopier–supported foundation systems. Technical Bulletin, 2, GEOPIER Foundation Co., Inc., Scottsdale, AZ Wissmann KJ (1999) Bearing capacity of Geopier–supported foundation systems. Technical Bulletin, 2, GEOPIER Foundation Co., Inc., Scottsdale, AZ
12.
go back to reference Frikha W, Bouassida M (2013) Cylindrical cavity expansion in elastoplastic medium with a variable potential flow. Int J Geomech 13(1):9–15CrossRef Frikha W, Bouassida M (2013) Cylindrical cavity expansion in elastoplastic medium with a variable potential flow. Int J Geomech 13(1):9–15CrossRef
13.
go back to reference Ng KS (2018) Numerical study on bearing capacity of single stone column. Int J Geo-Eng 9(1):1–10CrossRef Ng KS (2018) Numerical study on bearing capacity of single stone column. Int J Geo-Eng 9(1):1–10CrossRef
14.
go back to reference Bouassida M, De Buhan P, Dormieux L (1995) Bearing capacity of a foundation resting on a soil reinforced by a group of columns. Géotechnique 45(1):25–34CrossRef Bouassida M, De Buhan P, Dormieux L (1995) Bearing capacity of a foundation resting on a soil reinforced by a group of columns. Géotechnique 45(1):25–34CrossRef
15.
go back to reference Stuedlein AW, Holtz RD (2013) Bearing capacity of spread footings on aggregate pier reinforced clay. J Geotech Geoenviron Eng 139(1):49–58CrossRef Stuedlein AW, Holtz RD (2013) Bearing capacity of spread footings on aggregate pier reinforced clay. J Geotech Geoenviron Eng 139(1):49–58CrossRef
16.
go back to reference Etezad M, Hanna AM, Khalifa M (2018) Bearing capacity of a group of stone columns in soft soil subjected to local or punching shear failures. Int J Geomech 18(12):04018169CrossRef Etezad M, Hanna AM, Khalifa M (2018) Bearing capacity of a group of stone columns in soft soil subjected to local or punching shear failures. Int J Geomech 18(12):04018169CrossRef
17.
go back to reference Ng KS, Tan SA (2015) Settlement prediction of stone column group. Int J Geosynth Ground Eng 1(4):1–13CrossRef Ng KS, Tan SA (2015) Settlement prediction of stone column group. Int J Geosynth Ground Eng 1(4):1–13CrossRef
18.
go back to reference Barksdale RD, Bachus RC (1983) Design and construction of stone columns, vol. I (No. FHWA/RD-83/026; SCEGIT-83-104). Turner-Fairbank Highway Research Center Barksdale RD, Bachus RC (1983) Design and construction of stone columns, vol. I (No. FHWA/RD-83/026; SCEGIT-83-104). Turner-Fairbank Highway Research Center
19.
go back to reference Lutenegger AJ, Adams MT (1998) Bearing capacity of footings on compacted sand. In: International conference on case histories in geotechnical engineering, pp 1216–1224 Lutenegger AJ, Adams MT (1998) Bearing capacity of footings on compacted sand. In: International conference on case histories in geotechnical engineering, pp 1216–1224
20.
go back to reference Michalowski RL (2001) Upper-bound load estimates on square and rectangular footings. Géotechnique 51(9):787–798CrossRef Michalowski RL (2001) Upper-bound load estimates on square and rectangular footings. Géotechnique 51(9):787–798CrossRef
21.
go back to reference Zhu M, Michalowski RL (2005) Shape factors for limit loads on square and rectangular footings. J Geotech Geoenviron Eng 131(2):223–231CrossRef Zhu M, Michalowski RL (2005) Shape factors for limit loads on square and rectangular footings. J Geotech Geoenviron Eng 131(2):223–231CrossRef
22.
go back to reference Hanna AM, Etezad M, Ayadat T (2013) Mode of failure of a group of stone columns in soft soil. Int J Geomech 13(1):87–96CrossRef Hanna AM, Etezad M, Ayadat T (2013) Mode of failure of a group of stone columns in soft soil. Int J Geomech 13(1):87–96CrossRef
Metadata
Title
Bearing Capacity of Stone Column Reinforced Foundation Subjected to Inclined Loadings
Authors
Kok Shien Ng
Juliana Idrus
Yee Ming Chew
Publication date
01-09-2021
Publisher
Springer International Publishing
Published in
International Journal of Geosynthetics and Ground Engineering / Issue 3/2021
Print ISSN: 2199-9260
Electronic ISSN: 2199-9279
DOI
https://doi.org/10.1007/s40891-021-00307-5

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