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Published in: Geotechnical and Geological Engineering 6/2016

15-02-2016 | Original paper

Shear Strength Response of a Geotextile-Reinforced Chlef Sand: A Laboratory Study

Authors: Ismail Benessalah, Ahmed Arab, Pascal Villard, Khayra Merabet, Rachid Bouferra

Published in: Geotechnical and Geological Engineering | Issue 6/2016

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Abstract

During the last earthquake that occurred in Chlef (El Asnam 1980, Algeria), a significant decrease in the shear strength has caused major damages to several civil and hydraulic structures (earth dams, embankments, bridges, slopes and buildings), especially for the saturated sandy soil of the areas near Chlef valley. This paper presents a laboratory study of drained compression triaxial tests conducted on sandy soil reinforced with horizontal layers of geotextile, in order to study the influence of geotextile layer characteristics both on shear stress–strain and on volumetric change–strain. Tests were carried out on medium and dense sand. The experimental programme includes some drained compression tests performed on reinforced sand samples, for different values of the geotextile layers number (N g), of confining pressure (\( \sigma_{\text{c}}^{\prime } \)) and relative density (D r). The test results have shown that the contribution of the geotextile at low values of the axial strain (ε 1) is negligible, for higher values of (ε 1); geotextile induces a quasi-linear increase in the deviator stress (q) and leads to an increase in the volume contractiveness within the reinforced samples. A negligible influence of geotextile layers number (N g) on the stress–strain behaviour and the volumetric change has been shown, when normalized with N g. The results indicate that the contribution of geotextile to the stress–strain mobilization increases with increasing confining pressure, while its contribution to the volume contraction decreases with the increase in the confining pressure.

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Literature
go back to reference Al Mahmoud M (1997) Laboratory study of behaviour sands under low confining. Ph.D. dissertation, University of Science and Technology of Lille1, France Al Mahmoud M (1997) Laboratory study of behaviour sands under low confining. Ph.D. dissertation, University of Science and Technology of Lille1, France
go back to reference Arab A (2008) Behaviour soils under monotonic and cyclic loading. Ph.D. dissertation, University of Science and Technology of Oran, Oran, Algeria Arab A (2008) Behaviour soils under monotonic and cyclic loading. Ph.D. dissertation, University of Science and Technology of Oran, Oran, Algeria
go back to reference Arab A (2009) Monotonic and cyclic behaviour of silty sand. C R Mec 337(2009):621–631CrossRef Arab A (2009) Monotonic and cyclic behaviour of silty sand. C R Mec 337(2009):621–631CrossRef
go back to reference Arab A, Shahrour I, Lancelot L (2011) A laboratory study of liquefaction of partially saturated sand. J Iber Geol 37(1):29–36CrossRef Arab A, Shahrour I, Lancelot L (2011) A laboratory study of liquefaction of partially saturated sand. J Iber Geol 37(1):29–36CrossRef
go back to reference Ashmawy AK, Bourdeau PL (1998) Effect of geotextile reinforcement on the stress–strain and volumetric response of sand. In: Proceedings of the sixth international conference on geosynthetics, vol 2, Atlanta, pp 1079–1082 Ashmawy AK, Bourdeau PL (1998) Effect of geotextile reinforcement on the stress–strain and volumetric response of sand. In: Proceedings of the sixth international conference on geosynthetics, vol 2, Atlanta, pp 1079–1082
go back to reference Athanasopoulos GA (1993) Effect of particle size on the mechanical behavior of sand–geotextile composites. Geotext Geomembr 12:255–273CrossRef Athanasopoulos GA (1993) Effect of particle size on the mechanical behavior of sand–geotextile composites. Geotext Geomembr 12:255–273CrossRef
go back to reference Belkhatir M, Missoum H, Arab A, Della N, Schanz T (2011a) The undrained shear strength characteristics of silty sand: an experimental study of the effect of fines. Geol Croat 64(1):31–39. doi:10.4154/GC.2011.03 CrossRef Belkhatir M, Missoum H, Arab A, Della N, Schanz T (2011a) The undrained shear strength characteristics of silty sand: an experimental study of the effect of fines. Geol Croat 64(1):31–39. doi:10.​4154/​GC.​2011.​03 CrossRef
go back to reference Belkhatir M, Arab A, Schanz T, Missoum H, Della N (2011b) Laboratory study on the liquefaction resistance of sand-silt mixtures: effect of grading characteristics. Granul Matter 13:599–609. doi:10.1007/s10035-011-0269-0 CrossRef Belkhatir M, Arab A, Schanz T, Missoum H, Della N (2011b) Laboratory study on the liquefaction resistance of sand-silt mixtures: effect of grading characteristics. Granul Matter 13:599–609. doi:10.​1007/​s10035-011-0269-0 CrossRef
go back to reference Belkhatir M, Schanz T, Arab A (2013) Effect of fines content and void ratio on the saturated hydraulic conductivity and undrained shear strength of sand–silt mixtures. Environ Earth Sci. doi:10.1007/s12665-013-2289-z Belkhatir M, Schanz T, Arab A (2013) Effect of fines content and void ratio on the saturated hydraulic conductivity and undrained shear strength of sand–silt mixtures. Environ Earth Sci. doi:10.​1007/​s12665-013-2289-z
go back to reference Bishop AW, Wesley LD (1975) A hydraulic triaxial apparatus for controlled stress path testing. Géotechnique 25(4):657–670CrossRef Bishop AW, Wesley LD (1975) A hydraulic triaxial apparatus for controlled stress path testing. Géotechnique 25(4):657–670CrossRef
go back to reference Chen X, Zhang J, Li Z (2014) Shear behaviour of a geogrid-reinforced coarse-grained soil based on large-scale triaxial tests. Geotext Geomembr 42(2014):312–328CrossRef Chen X, Zhang J, Li Z (2014) Shear behaviour of a geogrid-reinforced coarse-grained soil based on large-scale triaxial tests. Geotext Geomembr 42(2014):312–328CrossRef
go back to reference Della N, Arab A, Belkhatir M (2011) A laboratory study of the initial structure and the overconsolidation effects on the undrained monotonic behavior of sandy soil from Chlef region in northern Algeria. Arab J Geosci 4(5–6):983–991CrossRef Della N, Arab A, Belkhatir M (2011) A laboratory study of the initial structure and the overconsolidation effects on the undrained monotonic behavior of sandy soil from Chlef region in northern Algeria. Arab J Geosci 4(5–6):983–991CrossRef
go back to reference Djaafer Henni A, Arab A, Belkhatir M, Hamoudi SA, Khelafi H (2011) Undrained behavior of silty sand: effect of the overconsolidation ratio. Arab J Geosci. doi:10.1007/s12517-011-0365-9 Djaafer Henni A, Arab A, Belkhatir M, Hamoudi SA, Khelafi H (2011) Undrained behavior of silty sand: effect of the overconsolidation ratio. Arab J Geosci. doi:10.​1007/​s12517-011-0365-9
go back to reference Gray DH, Al-Refeai T (1986) Behavior of fabric vs. fiber-reinforced sand. J Geotechn Eng ASCE 112(8):804–820CrossRef Gray DH, Al-Refeai T (1986) Behavior of fabric vs. fiber-reinforced sand. J Geotechn Eng ASCE 112(8):804–820CrossRef
go back to reference Haeri SM, Noorzad R, Oskourouchi AM (2000) Effect of geotextile reinforced on the mechanical behaviour of sand. Geotext Geomembr 18:385–402CrossRef Haeri SM, Noorzad R, Oskourouchi AM (2000) Effect of geotextile reinforced on the mechanical behaviour of sand. Geotext Geomembr 18:385–402CrossRef
go back to reference Houston LS, Perez-Garcia N, Houston WN (2008) Shear strength and shear induced volume change behaviour of unsaturated soils from a triaxial test program. J Geotechn Geoenviron Eng ASCE 134(11):1619–1632CrossRef Houston LS, Perez-Garcia N, Houston WN (2008) Shear strength and shear induced volume change behaviour of unsaturated soils from a triaxial test program. J Geotechn Geoenviron Eng ASCE 134(11):1619–1632CrossRef
go back to reference Krishnaswamy NR, Isaac NT (1994) Liquefaction potential of reinforced sand. Geotext Geomembr 13(1):23–41CrossRef Krishnaswamy NR, Isaac NT (1994) Liquefaction potential of reinforced sand. Geotext Geomembr 13(1):23–41CrossRef
go back to reference Ling HI, Tatsuoka F (1993) Laboratory evaluation of a nonwoven geotextile for reinforcing on site soil. Proc Geosynth 93(2):533–546 Ling HI, Tatsuoka F (1993) Laboratory evaluation of a nonwoven geotextile for reinforcing on site soil. Proc Geosynth 93(2):533–546
go back to reference Michalowski RL (2004) Limit loads on reinforced foundation soils. J Geotechn Geoenviron Eng 130(4):381–390CrossRef Michalowski RL (2004) Limit loads on reinforced foundation soils. J Geotechn Geoenviron Eng 130(4):381–390CrossRef
go back to reference Moraci N, Recalcati P (2006) Factors affecting the pullout behaviour of extruded geogrids embedded in a compacted granular soil. Geotext Geomembr 24(4):220–242CrossRef Moraci N, Recalcati P (2006) Factors affecting the pullout behaviour of extruded geogrids embedded in a compacted granular soil. Geotext Geomembr 24(4):220–242CrossRef
go back to reference Richa B (1992) Etude au triaxial dynamique de la liquéfaction des sols renforcés par geotextiles. Ph.D. dissertation, Univ. Joseph Fourier, Grenoble 1, Grenoble, France Richa B (1992) Etude au triaxial dynamique de la liquéfaction des sols renforcés par geotextiles. Ph.D. dissertation, Univ. Joseph Fourier, Grenoble 1, Grenoble, France
go back to reference Tang C, Shi T, Gao W, Chen F, Cai Y (2007) Strength and mechanical behavior of reinforced and cement stabilized clayey soil. Geotext Geomembr 25(3):194–202CrossRef Tang C, Shi T, Gao W, Chen F, Cai Y (2007) Strength and mechanical behavior of reinforced and cement stabilized clayey soil. Geotext Geomembr 25(3):194–202CrossRef
go back to reference Unnikrishnan N, Rajagopal K, Krishnaswamy NR (2002) Behavior of reinforced clay under monotonic and cyclic loading. Geotxtiles and Geomembranes 20:117–133CrossRef Unnikrishnan N, Rajagopal K, Krishnaswamy NR (2002) Behavior of reinforced clay under monotonic and cyclic loading. Geotxtiles and Geomembranes 20:117–133CrossRef
go back to reference Wang G-H, Sassa K, Fukuoka H, Tada T (2007) Experimental study on the shearing behavior of saturated silty soils based on ring-shear tests. J Geotechn Geoenviron Eng ASCE 133(3):310–333CrossRef Wang G-H, Sassa K, Fukuoka H, Tada T (2007) Experimental study on the shearing behavior of saturated silty soils based on ring-shear tests. J Geotechn Geoenviron Eng ASCE 133(3):310–333CrossRef
Metadata
Title
Shear Strength Response of a Geotextile-Reinforced Chlef Sand: A Laboratory Study
Authors
Ismail Benessalah
Ahmed Arab
Pascal Villard
Khayra Merabet
Rachid Bouferra
Publication date
15-02-2016
Publisher
Springer International Publishing
Published in
Geotechnical and Geological Engineering / Issue 6/2016
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-016-9988-7

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