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Erschienen in: Geotechnical and Geological Engineering 2/2019

07.08.2018 | Original Paper

Reliability Assessment of Bearing Capacity of Cement–Iron Ore Tailing Blend Black Cotton Soil for Strip Foundations

verfasst von: Paul Yohanna, Johnson R. Oluremi, Adrian O. Eberemu, Kolawole J. Osinubi, John E. Sani

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 2/2019

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Abstract

A reliability estimate of bearing capacity values of cement–iron ore tailing treated black cotton soil was evaluated using a predictive model developed from laboratory results for specimens compacted at British Standard light, West African standard and British Standard heavy energy levels. Laboratory based geotechnical properties of the treated black cotton soil were incorporated into FORTRAN-based first-order reliability program to determine the reliability index values for the following parameters: cement content, C, Iron ore tailing content, IOT, cohesion, CO, friction angle, FA, percentage fine, PF, plasticity index, PI and unit weight, UW. Although cohesion, friction angle, plasticity index and unit weight were greatly influenced by the coefficient of variation, cement content C, IOT content IOT and percentage fine PF did not significantly affect the reliability index values. F-distribution test at 95% level of significance shows that compactive effort had significant effect on the outcome of the reliability index values. However, since reliability index (β) value of 1.0, which is considered adequate for serviceability limit state design, was not met, none of the compactive efforts could be used to model the behaviour of bearing capacity of cement–IOT treated black cotton soil. Hence, a more potent admixture should be used for improving the bearing capacity of strip foundation.

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Literatur
Zurück zum Zitat Abdel Massih DY, Soubra A, Low BK (2008) Reliability-based analysis and design of strip foundations against bearing capacity failure. J Geotech Geoenviron Eng 134(7):917–928CrossRef Abdel Massih DY, Soubra A, Low BK (2008) Reliability-based analysis and design of strip foundations against bearing capacity failure. J Geotech Geoenviron Eng 134(7):917–928CrossRef
Zurück zum Zitat Afolayan JO, Abubakar I (2003) Reliability analysis of reinforced concrete one-way slabs: the ultimate conditions. Niger J Eng 11(2):28–31 Afolayan JO, Abubakar I (2003) Reliability analysis of reinforced concrete one-way slabs: the ultimate conditions. Niger J Eng 11(2):28–31
Zurück zum Zitat Afolayan JO, Nwaiwu CMO (2005) Reliability-based assessment of compacted lateritic soil liners. Comput Geotech 32(7):505–519CrossRef Afolayan JO, Nwaiwu CMO (2005) Reliability-based assessment of compacted lateritic soil liners. Comput Geotech 32(7):505–519CrossRef
Zurück zum Zitat Baecher GB, Christian JT (2008) Spatial variability and geotechnical reliability. In: Phoon KK (ed) Reliability-based design in geotechnical engineering. Taylor & Francis, Philadelphia, pp 76–133 Baecher GB, Christian JT (2008) Spatial variability and geotechnical reliability. In: Phoon KK (ed) Reliability-based design in geotechnical engineering. Taylor & Francis, Philadelphia, pp 76–133
Zurück zum Zitat Benson CH (1993) Probability distributions for hydraulic conductivity of compacted soil liners. J Geotech Eng 119(3):471–486CrossRef Benson CH (1993) Probability distributions for hydraulic conductivity of compacted soil liners. J Geotech Eng 119(3):471–486CrossRef
Zurück zum Zitat Benson CH, Daniel DE (1994) Minimum thickness of compacted soil liner: 1 stochastic models. J Geotech Eng 120(1):129–152CrossRef Benson CH, Daniel DE (1994) Minimum thickness of compacted soil liner: 1 stochastic models. J Geotech Eng 120(1):129–152CrossRef
Zurück zum Zitat Benson CH, Zhai H, Wang X (1994) Estimating hydraulic conductivity of compacted clay liners. J Geotech Eng 120(2):366–387CrossRef Benson CH, Zhai H, Wang X (1994) Estimating hydraulic conductivity of compacted clay liners. J Geotech Eng 120(2):366–387CrossRef
Zurück zum Zitat Bogardi I, Kelly WE, Bardossy A (1989) Reliability model for soil liners; initial design. J Geotech Geoenviron Eng 115(5):658–669CrossRef Bogardi I, Kelly WE, Bardossy A (1989) Reliability model for soil liners; initial design. J Geotech Geoenviron Eng 115(5):658–669CrossRef
Zurück zum Zitat Charles JA (2002) Ground improvement: the interaction of engineering science and experience-based technology. Geotechnique 52(7):527–532CrossRef Charles JA (2002) Ground improvement: the interaction of engineering science and experience-based technology. Geotechnique 52(7):527–532CrossRef
Zurück zum Zitat Dey A, Kudmetha KK (2013). Bearing capacity of single pile in sand: reliability analysis using Monte-Carlo simulation. In: Proceedings of Indian geotechnical conference, 22–24 Dec 2013, Roorkee, India Dey A, Kudmetha KK (2013). Bearing capacity of single pile in sand: reliability analysis using Monte-Carlo simulation. In: Proceedings of Indian geotechnical conference, 22–24 Dec 2013, Roorkee, India
Zurück zum Zitat Duncan MJ (2000) Factors of safety and reliability in geotechnical engineering. J Geotech Geoenviron Eng 126:307–316CrossRef Duncan MJ (2000) Factors of safety and reliability in geotechnical engineering. J Geotech Geoenviron Eng 126:307–316CrossRef
Zurück zum Zitat Eberemu OA (2008) Evaluation of compacted bagasse ash treated laterite soil as hydraulic barriers in waste containment systems. In: Unpublished Ph.D dissertation submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria Eberemu OA (2008) Evaluation of compacted bagasse ash treated laterite soil as hydraulic barriers in waste containment systems. In: Unpublished Ph.D dissertation submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria
Zurück zum Zitat Eberemu AO, Afolayan JO, Abubakar I, Osinubi KJ (2014) Reliability evaluation of compacted lateritic soil treated with bagasse ash as material for waste landfill barrier. In: Proceedings of the geo-congress 2014 on geo-characterization and modeling for sustainability, American Society of Civil Engineers ASCE Eberemu AO, Afolayan JO, Abubakar I, Osinubi KJ (2014) Reliability evaluation of compacted lateritic soil treated with bagasse ash as material for waste landfill barrier. In: Proceedings of the geo-congress 2014 on geo-characterization and modeling for sustainability, American Society of Civil Engineers ASCE
Zurück zum Zitat Fenton GA (1997) Probabilistic methods in geotechnical engineering. In: Workshop presented at ASCE GeoLogan’97 conference, Logan, Utah, ASCE Geotechnical Safety and Reliability Committee Fenton GA (1997) Probabilistic methods in geotechnical engineering. In: Workshop presented at ASCE GeoLogan’97 conference, Logan, Utah, ASCE Geotechnical Safety and Reliability Committee
Zurück zum Zitat Fenton GA, Griffiths DV (2005) Three-dimensional probabilistic foundation settlement. J Geotech Geoenviron Eng 131(2):232–239CrossRef Fenton GA, Griffiths DV (2005) Three-dimensional probabilistic foundation settlement. J Geotech Geoenviron Eng 131(2):232–239CrossRef
Zurück zum Zitat Ghose MK, Sen PK (2001) Characteristics of iron ore tailing slime in india and its test for required pond size. J Environ Monit Assess 68(1):51–61CrossRef Ghose MK, Sen PK (2001) Characteristics of iron ore tailing slime in india and its test for required pond size. J Environ Monit Assess 68(1):51–61CrossRef
Zurück zum Zitat Gourley CS, Newill D, Schreiner HD (1993) Expansive soils: TRL’s research strategy. In: Proceedings of 1st international symposium on engineering characteristics of arid soils Gourley CS, Newill D, Schreiner HD (1993) Expansive soils: TRL’s research strategy. In: Proceedings of 1st international symposium on engineering characteristics of arid soils
Zurück zum Zitat Griffiths DV, Fenton GA, Manoharan N (2002) Bearing capacity of rough rigid strip footing on cohesive soil: probabilistic study. J Geotech Geoenviron Eng 128(9):743–755CrossRef Griffiths DV, Fenton GA, Manoharan N (2002) Bearing capacity of rough rigid strip footing on cohesive soil: probabilistic study. J Geotech Geoenviron Eng 128(9):743–755CrossRef
Zurück zum Zitat Gui S, Zhang R, Turner JP, Zue X (2000) Probabilistic slope stability analysis with stochastic soil hydraulic conductivity. J Geotech Geoenviron Eng 126(1):1–9CrossRef Gui S, Zhang R, Turner JP, Zue X (2000) Probabilistic slope stability analysis with stochastic soil hydraulic conductivity. J Geotech Geoenviron Eng 126(1):1–9CrossRef
Zurück zum Zitat Harrop-Willians K (1985) Clay liner permeability: evaluation and variation. J Geotech Eng 111(10):1211–1225CrossRef Harrop-Willians K (1985) Clay liner permeability: evaluation and variation. J Geotech Eng 111(10):1211–1225CrossRef
Zurück zum Zitat Ijimdiya ST (2010) Evaluation of compacted bagasse ash treated black cotton soil as hydraulic barriers in waste containment systems. In: Unpublished Ph.D dissertation submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria Ijimdiya ST (2010) Evaluation of compacted bagasse ash treated black cotton soil as hydraulic barriers in waste containment systems. In: Unpublished Ph.D dissertation submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria
Zurück zum Zitat Kotegoda M, Rosso R (1997) Statistics, probability, and reliability for civil and environmental engineers. McGraw-Hill, New York Kotegoda M, Rosso R (1997) Statistics, probability, and reliability for civil and environmental engineers. McGraw-Hill, New York
Zurück zum Zitat National Research Board (2006) Geological and geotechnical engineering in the New Millennium: opportunities for research and technological innovation. The National Academies Press, Washington, D.C. www.nap.edu National Research Board (2006) Geological and geotechnical engineering in the New Millennium: opportunities for research and technological innovation. The National Academies Press, Washington, D.C. www.​nap.​edu
Zurück zum Zitat Neville AM (2000). Properties of concrete, 4th ed. (low-price ed.). Pearson Education Asia Publication, England, Produced by Longman Malaysia Neville AM (2000). Properties of concrete, 4th ed. (low-price ed.). Pearson Education Asia Publication, England, Produced by Longman Malaysia
Zurück zum Zitat NKB—Report No. 36 (1978) Recommendation for loading and safety regulations for structural design, Nordic Committee on Building Regulation NKB—Report No. 36 (1978) Recommendation for loading and safety regulations for structural design, Nordic Committee on Building Regulation
Zurück zum Zitat Nwaiwu CMO, Afolayan JO, Osinubi KJ (2009) Reliability estimates of field hydraulic conductivity of compacted lateritic soils continental. J Eng Sci 4:36–47 Nwaiwu CMO, Afolayan JO, Osinubi KJ (2009) Reliability estimates of field hydraulic conductivity of compacted lateritic soils continental. J Eng Sci 4:36–47
Zurück zum Zitat Ola SA (1983) The geotechnical properties of black cotton soils of north eastern Nigeria. In: Ola SA (ed) Tropical soils of Nigeria in engineering practice. Balkema, Rotterdam, pp 160–178 Ola SA (1983) The geotechnical properties of black cotton soils of north eastern Nigeria. In: Ola SA (ed) Tropical soils of Nigeria in engineering practice. Balkema, Rotterdam, pp 160–178
Zurück zum Zitat Oluremi JR, Adedokun SI, Osuolale OM (2012) Stabilization of poor lateritic soils with coconut husk ash. Int J Eng Res Technol 1(8):1–9 Oluremi JR, Adedokun SI, Osuolale OM (2012) Stabilization of poor lateritic soils with coconut husk ash. Int J Eng Res Technol 1(8):1–9
Zurück zum Zitat Oriola FOP, Moses G, Afolayan JO (2012) Reliability estimates of field hydraulic conductivity of compacted bagasse ash treated foundry sand. J Environ Earth Sci 2(6):1–13 Oriola FOP, Moses G, Afolayan JO (2012) Reliability estimates of field hydraulic conductivity of compacted bagasse ash treated foundry sand. J Environ Earth Sci 2(6):1–13
Zurück zum Zitat Osinubi KJ (2000) Stabilization of tropical black clays with cement and pulverised coal bottom ash admixture. Am Soc Civil Eng Geotech Spec Publ 99:298–302 Osinubi KJ (2000) Stabilization of tropical black clays with cement and pulverised coal bottom ash admixture. Am Soc Civil Eng Geotech Spec Publ 99:298–302
Zurück zum Zitat Popescu R, Deodatis G, Nobahar A (2005) Effect of random heterogeneity of soil properties on bearing capacity. Probab Eng Mech 20:324–341CrossRef Popescu R, Deodatis G, Nobahar A (2005) Effect of random heterogeneity of soil properties on bearing capacity. Probab Eng Mech 20:324–341CrossRef
Zurück zum Zitat Przewlocki J (2005) A stochastic approach to the problem of bearing capacity by the method of characteristics. Comput Geotech 32:370–376CrossRef Przewlocki J (2005) A stochastic approach to the problem of bearing capacity by the method of characteristics. Comput Geotech 32:370–376CrossRef
Zurück zum Zitat Vessia G, Cherubini C, Pieczyńska J, Puła W (2009) Application of random finite element method to bearing capacity design of strip footing. J GeoEng 4(3):103–112 Vessia G, Cherubini C, Pieczyńska J, Puła W (2009) Application of random finite element method to bearing capacity design of strip footing. J GeoEng 4(3):103–112
Zurück zum Zitat Yisa GL, Sani JE (2014) Reliability estimate of strength characteristic of iron ore tailing stabilized lateritic soil for road pavement sub-base materials. Electron J Geotech Eng 19:4177–4192 Yisa GL, Sani JE (2014) Reliability estimate of strength characteristic of iron ore tailing stabilized lateritic soil for road pavement sub-base materials. Electron J Geotech Eng 19:4177–4192
Zurück zum Zitat Yohanna P (2015) The use of iron-ore tailing as admixture in cement modification of black cotton soil. In: Unpublished M.Sc thesis submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria Yohanna P (2015) The use of iron-ore tailing as admixture in cement modification of black cotton soil. In: Unpublished M.Sc thesis submitted to the Department of Civil Engineering, Ahmadu Bello University, Zaria
Metadaten
Titel
Reliability Assessment of Bearing Capacity of Cement–Iron Ore Tailing Blend Black Cotton Soil for Strip Foundations
verfasst von
Paul Yohanna
Johnson R. Oluremi
Adrian O. Eberemu
Kolawole J. Osinubi
John E. Sani
Publikationsdatum
07.08.2018
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 2/2019
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-018-0660-2

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