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Erschienen in: Environmental Earth Sciences 3/2018

01.02.2018 | Original Article

Bearing capacity of soft soil model treated with end-bearing bottom ash columns

verfasst von: Razieh Moradi, Aminaton Marto, Ahmad Safuan A. Rashid, Mohammad Moeen Moradi, Abideen Adekunle Ganiyu, Suksun Horpibulsuk

Erschienen in: Environmental Earth Sciences | Ausgabe 3/2018

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Abstract

Granular column technique is a soil improvement method used to increase the bearing capacity of a soft soil area by replacing the soil with a group of granular column materials. The by-product utilisation is a worldwide interest for sustainable infrastructure development. Bottom ash, which is a combustion deposit derived from coal burning, is a potential by-product that could be used alternatively to sand or aggregate as a green granular column material. This research is to study the potential use of the bottom ash column-improved soft clay by conducting a series of small-scale physical modelling test. The bearing capacity behaviour and failure mode of soft clay improved with end-bearing group of bottom ash columns with and without geotextile encasement are investigated. The bearing capacity of soft clay is significantly enhanced by the inclusion of bottom ash columns; that is, 239% of bearing capacity improvement is observed with only 13% of improvement area. The bulging of the bottom ash column is transferred to buckling failure with higher bearing capacity when the bottom ash column is encased by geotextile. The outcome of this research leads to the usage of bottom ash by-product as a granular column material in sustainable soil improvement technique.

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Literatur
Zurück zum Zitat Ali K, Shahu J, Sharma K (2014) Model tests on single and groups of stone columns with different geosynthetic reinforcement arrangement. Geosynth Int 21(2):103–118CrossRef Ali K, Shahu J, Sharma K (2014) Model tests on single and groups of stone columns with different geosynthetic reinforcement arrangement. Geosynth Int 21(2):103–118CrossRef
Zurück zum Zitat Arulrajah A, Yaghoubi E, Monzur I, Horpibulsuk S (2016b) Recycled waste foundary sand as a sustainable subgrade fill and pipe-bedding construction material: engineering and environmental evaluation. Sustain Cities Soc 28:343–349CrossRef Arulrajah A, Yaghoubi E, Monzur I, Horpibulsuk S (2016b) Recycled waste foundary sand as a sustainable subgrade fill and pipe-bedding construction material: engineering and environmental evaluation. Sustain Cities Soc 28:343–349CrossRef
Zurück zum Zitat Balaam N, Booker J (1985) Effect of stone column yield on settlement of rigid foundations in stabilized clay. Int J Numer Anal Methods Geomech 9(4):331–351CrossRef Balaam N, Booker J (1985) Effect of stone column yield on settlement of rigid foundations in stabilized clay. Int J Numer Anal Methods Geomech 9(4):331–351CrossRef
Zurück zum Zitat Bruce DA, Bruce ME (2001) Practitioner’s guide to the deep mixing method. Ground Improv 5(3):95–100CrossRef Bruce DA, Bruce ME (2001) Practitioner’s guide to the deep mixing method. Ground Improv 5(3):95–100CrossRef
Zurück zum Zitat Castro J, Sagaseta C (2011) Deformation and consolidation around encased stone columns. Geotext Geomembr 29(3):268–276CrossRef Castro J, Sagaseta C (2011) Deformation and consolidation around encased stone columns. Geotext Geomembr 29(3):268–276CrossRef
Zurück zum Zitat Coastal Development Institute of Technology (2002) The deep mixing method—principle, design and construction. A.A. Balkelma, Avereest Coastal Development Institute of Technology (2002) The deep mixing method—principle, design and construction. A.A. Balkelma, Avereest
Zurück zum Zitat Donrak J, Rachan R, Horpibulsuk S, Arulrajah A, Du YJ (2016) Improvement of marginal lateritic soil using melamine debris replacement for sustainable engineering fill materials. J Clean Prod 134:515–522CrossRef Donrak J, Rachan R, Horpibulsuk S, Arulrajah A, Du YJ (2016) Improvement of marginal lateritic soil using melamine debris replacement for sustainable engineering fill materials. J Clean Prod 134:515–522CrossRef
Zurück zum Zitat Gniel J, Bouazza A (2009) Improvement of soft soils using geogrid encased stone columns. Geotext Geomembr 27(3):167–175CrossRef Gniel J, Bouazza A (2009) Improvement of soft soils using geogrid encased stone columns. Geotext Geomembr 27(3):167–175CrossRef
Zurück zum Zitat Hu, W. (1995). Physical modelling of group behaviour of stone column foundations. Ph.D. thesis, University of Glasgow Hu, W. (1995). Physical modelling of group behaviour of stone column foundations. Ph.D. thesis, University of Glasgow
Zurück zum Zitat Hughes J, Withers N (1974) Reinforcing of soft cohesive soils with stone columns. Ground Eng 7(3):42 Hughes J, Withers N (1974) Reinforcing of soft cohesive soils with stone columns. Ground Eng 7(3):42
Zurück zum Zitat Kaewsresai K, Kongkitkul W, Jongpradist P, Horpibulsuk S (2017) Use of geogrid encasement to increase the ductility of cement-mixed clay. J Testing Eval ASTM 45(5):1787–1799 (TE20160030) Kaewsresai K, Kongkitkul W, Jongpradist P, Horpibulsuk S (2017) Use of geogrid encasement to increase the ductility of cement-mixed clay. J Testing Eval ASTM 45(5):1787–1799 (TE20160030)
Zurück zum Zitat Karstunen M (1999) Alternative ways of modelling embankments on deep-stabilized soil. In: Proceedings of the International Conference on dry mix methods for deep soil stabilization. A. A. Balkelma, Rotterdam, pp 221–228 Karstunen M (1999) Alternative ways of modelling embankments on deep-stabilized soil. In: Proceedings of the International Conference on dry mix methods for deep soil stabilization. A. A. Balkelma, Rotterdam, pp 221–228
Zurück zum Zitat Malarvizhi S (2007) Comparative study on the behavior of encased stone column and conventional stone column. Soils Found 47(5):873–885CrossRef Malarvizhi S (2007) Comparative study on the behavior of encased stone column and conventional stone column. Soils Found 47(5):873–885CrossRef
Zurück zum Zitat Malarvizhi S, Ilamparuthi K (2004) Load versus settlement of clay bed stabilized with stone and reinforced stone columns. In: Proceedings of GeoAsia–2004, Seoul, Korea, pp 322–329 Malarvizhi S, Ilamparuthi K (2004) Load versus settlement of clay bed stabilized with stone and reinforced stone columns. In: Proceedings of GeoAsia–2004, Seoul, Korea, pp 322–329
Zurück zum Zitat Manz O (1997) Worldwide production of coal ash and utilization in concrete and other products. Fuel 76(8):691–696CrossRef Manz O (1997) Worldwide production of coal ash and utilization in concrete and other products. Fuel 76(8):691–696CrossRef
Zurück zum Zitat Marto A, Kassim KA, Makhtar AM, Wei LF, Lim YS (2010) Engineering characteristics of Tanjung Bin coal ash. Electron J Geotech Eng 15:1117–1129 Marto A, Kassim KA, Makhtar AM, Wei LF, Lim YS (2010) Engineering characteristics of Tanjung Bin coal ash. Electron J Geotech Eng 15:1117–1129
Zurück zum Zitat McCabe BA, McNeill JA, Black JA (2007) Ground improvement using the vibro-stone column technique. Paper presented at the Joint meeting of Engineers Ireland West Region and the Geotechnical Society of Ireland McCabe BA, McNeill JA, Black JA (2007) Ground improvement using the vibro-stone column technique. Paper presented at the Joint meeting of Engineers Ireland West Region and the Geotechnical Society of Ireland
Zurück zum Zitat McKelvey D, Sivakumar V, Bell A, Graham J (2004) Modelling vibrated stone columns in soft clay. Proc ICE-Geotech Eng 157(3):137–149CrossRef McKelvey D, Sivakumar V, Bell A, Graham J (2004) Modelling vibrated stone columns in soft clay. Proc ICE-Geotech Eng 157(3):137–149CrossRef
Zurück zum Zitat Murugesan S, Rajagopal K (2007) Model tests on geosynthetic-encased stone columns. Geosynth Int 14(6):346–354CrossRef Murugesan S, Rajagopal K (2007) Model tests on geosynthetic-encased stone columns. Geosynth Int 14(6):346–354CrossRef
Zurück zum Zitat Phetchuay C, Horpibulsuk S, Arulrajah A, Suksiripattanapong C, Udomchai A (2016) Strength development in soft marine clay stabilized by fly ash and calcium carbide residue based geopolymer. Appl Clay Sci 127–128:134–142CrossRef Phetchuay C, Horpibulsuk S, Arulrajah A, Suksiripattanapong C, Udomchai A (2016) Strength development in soft marine clay stabilized by fly ash and calcium carbide residue based geopolymer. Appl Clay Sci 127–128:134–142CrossRef
Zurück zum Zitat Phummiphan I, Horpibulsuk S, Phoo-ngernkham T, Arulrajah A, Shen SL (2016) Marginal lateritic soil stabilized with calcium carbide residue and fly ash geopolymers as a sustainable pavement base material. J Mater Civil Eng 29(2):1–10 Phummiphan I, Horpibulsuk S, Phoo-ngernkham T, Arulrajah A, Shen SL (2016) Marginal lateritic soil stabilized with calcium carbide residue and fly ash geopolymers as a sustainable pavement base material. J Mater Civil Eng 29(2):1–10
Zurück zum Zitat Prandtl L (1921) Uber Die Eindringungsfestigkeit (Harte) Plastischer Baustoffe Und Die Festigkeit Von Schneiden. Zeitschrift fur angewandte Mathematik und Mechanik 1(1):15–20CrossRef Prandtl L (1921) Uber Die Eindringungsfestigkeit (Harte) Plastischer Baustoffe Und Die Festigkeit Von Schneiden. Zeitschrift fur angewandte Mathematik und Mechanik 1(1):15–20CrossRef
Zurück zum Zitat Rashid ASA (2011) Behaviour of weak soils reinforced with soil columns formed by the deep mixing method. Phd dissertation, The University of Sheffield Rashid ASA (2011) Behaviour of weak soils reinforced with soil columns formed by the deep mixing method. Phd dissertation, The University of Sheffield
Zurück zum Zitat Rashid ASA, Noor NM (2012a) Estimation of interface resistance between testing chamber and soil model using shear box test. Eur J Sci Res 80(4):472–478 Rashid ASA, Noor NM (2012a) Estimation of interface resistance between testing chamber and soil model using shear box test. Eur J Sci Res 80(4):472–478
Zurück zum Zitat Rashid ASA, Noor NM (2012b) Estimation of wall friction of chamber box using consolidation characteristic. Appl Mech Mater 174–177:2137–2141CrossRef Rashid ASA, Noor NM (2012b) Estimation of wall friction of chamber box using consolidation characteristic. Appl Mech Mater 174–177:2137–2141CrossRef
Zurück zum Zitat Rashid ASA, Black JA, Mohamad H, Noor NM (2015a) Behavior of weak soils reinforced with end-bearing soil-cement columns formed by the deep mixing method. Mar Georesour Geotechnol 33(6):473–486CrossRef Rashid ASA, Black JA, Mohamad H, Noor NM (2015a) Behavior of weak soils reinforced with end-bearing soil-cement columns formed by the deep mixing method. Mar Georesour Geotechnol 33(6):473–486CrossRef
Zurück zum Zitat Rashid ASA, Black JA, Kueh ABH, Noor NM (2015b) Behaviour of weak soils reinforced with soil cement columns formed by the deep mixing method: rigid and flexible footings. Measurement 68:262–279CrossRef Rashid ASA, Black JA, Kueh ABH, Noor NM (2015b) Behaviour of weak soils reinforced with soil cement columns formed by the deep mixing method: rigid and flexible footings. Measurement 68:262–279CrossRef
Zurück zum Zitat Rashid ASA, Bunawan AR, Said KNM (2017a) The deep mixing method: bearing capacity studies. Geotech Geol Eng 35(6):2613–2623CrossRef Rashid ASA, Bunawan AR, Said KNM (2017a) The deep mixing method: bearing capacity studies. Geotech Geol Eng 35(6):2613–2623CrossRef
Zurück zum Zitat Rashid ASA, Shahrin MI, Horpibulsuk S, Hezmi MA, Yunus ZM, Borhamdin S (2017c) Development of sustainable masonry units from mud flood soil: strength and morphology investigations. Constr Build Mater 131:682–689CrossRef Rashid ASA, Shahrin MI, Horpibulsuk S, Hezmi MA, Yunus ZM, Borhamdin S (2017c) Development of sustainable masonry units from mud flood soil: strength and morphology investigations. Constr Build Mater 131:682–689CrossRef
Zurück zum Zitat Singh M, Siddique R (2013) Effect of coal bottom ash as partial replacement of sand on properties of concrete. Resour Conserv Recycl 72:20–32CrossRef Singh M, Siddique R (2013) Effect of coal bottom ash as partial replacement of sand on properties of concrete. Resour Conserv Recycl 72:20–32CrossRef
Zurück zum Zitat Wood DM, Hu W, Nash D (2000) Group effects in stone column foundations: model tests. Geotechnique 50(6):689–698CrossRef Wood DM, Hu W, Nash D (2000) Group effects in stone column foundations: model tests. Geotechnique 50(6):689–698CrossRef
Zurück zum Zitat Yoo C, Lee D (2012) Performance of geogrid-encased stone columns in soft ground: full-scale load tests. Geosynth Int 19(6):480–490CrossRef Yoo C, Lee D (2012) Performance of geogrid-encased stone columns in soft ground: full-scale load tests. Geosynth Int 19(6):480–490CrossRef
Zurück zum Zitat Yoo W, Kim BI, Cho W (2015) Model Test Study on the Behavior of Geotextile-Encased Sand Pile in Soft Clay Ground. KSCE J Civil Eng 19(3):592–601CrossRef Yoo W, Kim BI, Cho W (2015) Model Test Study on the Behavior of Geotextile-Encased Sand Pile in Soft Clay Ground. KSCE J Civil Eng 19(3):592–601CrossRef
Metadaten
Titel
Bearing capacity of soft soil model treated with end-bearing bottom ash columns
verfasst von
Razieh Moradi
Aminaton Marto
Ahmad Safuan A. Rashid
Mohammad Moeen Moradi
Abideen Adekunle Ganiyu
Suksun Horpibulsuk
Publikationsdatum
01.02.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 3/2018
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-018-7287-8

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