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Published in: Geotechnical and Geological Engineering 4/2013

01-08-2013 | Original paper

Factors Affecting Engineering Properties of Microfine Cement Grouted Sands

Authors: I. N. Markou, A. I. Droudakis

Published in: Geotechnical and Geological Engineering | Issue 4/2013

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Abstract

An experimental investigation was conducted in order to evaluate the influence of distance from the injection point and of parameters pertinent to the cement, the suspension and the sand on the effectiveness of microfine cement grouts. Three different cement types, each at three different gradations having nominal maximum grain sizes of 100, 20 and 10 μm, were used. Grouting effectiveness was evaluated by injecting suspensions with water to cement (W/C) ratios of 1, 2 and 3, by weight, into five uniform sand fractions with different grain sizes and eight composite sands with different gradations, using a specially constructed apparatus. Unconfined compression and permeability tests were conducted on the resulting grouted sand specimens, after curing for 28 and 90 days. Microfine cement grouted sands obtained unconfined compression strength values of up to 14.9 MPa and permeability coefficients as low as 1.3 × 10−6 cm/s or by up to 5 orders of magnitude lower than those of clean sands. The W/C ratio and the bleed capacity of suspensions as well as the effective grain size and the permeability coefficient of sands are very important parameters, since they affect substantially the grouted sand properties and are correlated satisfactorily with them. The strength and permeability of grouted sands can increase, decrease or remain constant with distance from the injection point depending on the easiness of suspension penetration into the sands. The improvement of grouted sand properties with increasing distance from the injection point is consistent with the observed increase of the cement content of grouted sands.

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Literature
go back to reference Akbulut S, Saglamer A (2002) Estimating the groutability of granular soils: a new approach. Tunn Undergr Sp Technol 17:371–380CrossRef Akbulut S, Saglamer A (2002) Estimating the groutability of granular soils: a new approach. Tunn Undergr Sp Technol 17:371–380CrossRef
go back to reference Bruce DA, Littlejohn S, Naudts CA (1997) Grouting materials for ground treatment: a practitioner’s guide. In: Vipulanandan C (ed) Proceedings of the conference on grouting: compaction–remediation–testing. Logan, ASCE GSP 66, pp 306–334 Bruce DA, Littlejohn S, Naudts CA (1997) Grouting materials for ground treatment: a practitioner’s guide. In: Vipulanandan C (ed) Proceedings of the conference on grouting: compaction–remediation–testing. Logan, ASCE GSP 66, pp 306–334
go back to reference Dano C, Hicher P-Y, Tailliez S (2004) Engineering properties of grouted sands. J Geotech Geoenv Eng 130:328–338CrossRef Dano C, Hicher P-Y, Tailliez S (2004) Engineering properties of grouted sands. J Geotech Geoenv Eng 130:328–338CrossRef
go back to reference De Paoli B, Bosco B, Granata R, Bruce D (1992) Fundamental observations on cement based grouts (2): microfine cements and the CemillR process. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 486–499 De Paoli B, Bosco B, Granata R, Bruce D (1992) Fundamental observations on cement based grouts (2): microfine cements and the CemillR process. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 486–499
go back to reference Dupla J-C, Canou J, Gouvenot D (2004) An advanced experimental set-up for studying a monodirectional grout injection process. Ground Improv 8:91–99CrossRef Dupla J-C, Canou J, Gouvenot D (2004) An advanced experimental set-up for studying a monodirectional grout injection process. Ground Improv 8:91–99CrossRef
go back to reference Eriksson M, Friedrich M, Vorschulze C (2003) Variations in the rheology and penetrability of cement-based grouts—an experimental study. Cem Concr Res 34:1111–1119CrossRef Eriksson M, Friedrich M, Vorschulze C (2003) Variations in the rheology and penetrability of cement-based grouts—an experimental study. Cem Concr Res 34:1111–1119CrossRef
go back to reference Henn RW, Soule NC (2010) Ultrafine cement in pressure grouting. ASCE Press, RestonCrossRef Henn RW, Soule NC (2010) Ultrafine cement in pressure grouting. ASCE Press, RestonCrossRef
go back to reference Henn R, Davenport R, Tzobery S, Bandimere S (2005) Additional test results for comparison of penetration of grout made with various ultrafine cement products. In: Proceedings of the rapid excavation and tunnelling conference. Elsevier, Amsterdam, pp 1039–1046 Henn R, Davenport R, Tzobery S, Bandimere S (2005) Additional test results for comparison of penetration of grout made with various ultrafine cement products. In: Proceedings of the rapid excavation and tunnelling conference. Elsevier, Amsterdam, pp 1039–1046
go back to reference Krizek RJ, Helal M (1992) Anisotropic behavior of cement grouted sand. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 541–550 Krizek RJ, Helal M (1992) Anisotropic behavior of cement grouted sand. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 541–550
go back to reference Legendre Y, Hery P, Vattement H (1987) Microsol grouting, a method for grouting fine alluvium. In: Proceedings of the 6th international offshore mechanics and arctic engineering symposium. Houston, ASME, vol 1, pp 433–440 Legendre Y, Hery P, Vattement H (1987) Microsol grouting, a method for grouting fine alluvium. In: Proceedings of the 6th international offshore mechanics and arctic engineering symposium. Houston, ASME, vol 1, pp 433–440
go back to reference Littlejohn GS (1982) Design of cement based grouts. In: Baker WH (ed) Proceedings of the conference on grouting in geotechnical engineering. New Orleans, ASCE, vol 1, pp 35–48 Littlejohn GS (1982) Design of cement based grouts. In: Baker WH (ed) Proceedings of the conference on grouting in geotechnical engineering. New Orleans, ASCE, vol 1, pp 35–48
go back to reference Lombardi G (2003) Grouting of rock masses. In: Johnsen FL, Bruce AD, Byle JM (eds) Proceedings of the 3rd international conference on grouting and ground treatment. New Orleans, ASCE GSP 120, vol 1, pp 164–197 Lombardi G (2003) Grouting of rock masses. In: Johnsen FL, Bruce AD, Byle JM (eds) Proceedings of the 3rd international conference on grouting and ground treatment. New Orleans, ASCE GSP 120, vol 1, pp 164–197
go back to reference Matsui S, Nakazato Y, Tokoro T, Takahashi N (1996) Basic study on grouted sand specimen preparation methods and compressive strength. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 177–182 Matsui S, Nakazato Y, Tokoro T, Takahashi N (1996) Basic study on grouted sand specimen preparation methods and compressive strength. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 177–182
go back to reference Mollamahmutoglu M, Yilmaz Y (2011) Engineering properties of medium-to-fine sands injected with microfine cement grout. Marine Georesour Geotechnol 29:95–109CrossRef Mollamahmutoglu M, Yilmaz Y (2011) Engineering properties of medium-to-fine sands injected with microfine cement grout. Marine Georesour Geotechnol 29:95–109CrossRef
go back to reference O’Connor KM, Krizek RJ, Atmatzidis DK (1978) Microcharacteristics of chemically stabilized granular materials. J Geotech Eng Div, Am Soc Civ Eng 104:939–952 O’Connor KM, Krizek RJ, Atmatzidis DK (1978) Microcharacteristics of chemically stabilized granular materials. J Geotech Eng Div, Am Soc Civ Eng 104:939–952
go back to reference Ozgurel HG, Vipulanandan C (2005) Effect of grain size and distribution on permeability and mechanical behavior of acrylamide grouted sand. J Geotech Geoenv Eng 131:1457–1465CrossRef Ozgurel HG, Vipulanandan C (2005) Effect of grain size and distribution on permeability and mechanical behavior of acrylamide grouted sand. J Geotech Geoenv Eng 131:1457–1465CrossRef
go back to reference Pantazopoulos IA, Markou IN, Christodoulou DN, Droudakis AI, Atmatzidis DK, Antiohos SK, Chaniotakis E (2012) Development of microfine cement grouts by pulverizing ordinary cements. Cem Concr Comp 34:593–603CrossRef Pantazopoulos IA, Markou IN, Christodoulou DN, Droudakis AI, Atmatzidis DK, Antiohos SK, Chaniotakis E (2012) Development of microfine cement grouts by pulverizing ordinary cements. Cem Concr Comp 34:593–603CrossRef
go back to reference Perret S, Ballivy G, Khayat K, Mnif T (1997) Injectability of fine sand with cement-based grout. In: Vipulanandan C (ed) Proceedings of the conference on grouting: compaction–remediation–testing. Logan, ASCE GSP 66, pp 289–305 Perret S, Ballivy G, Khayat K, Mnif T (1997) Injectability of fine sand with cement-based grout. In: Vipulanandan C (ed) Proceedings of the conference on grouting: compaction–remediation–testing. Logan, ASCE GSP 66, pp 289–305
go back to reference Sano M, Shimoda M, Matsuo O, Koseki J (1996) Microfine cement grouting as a countermeasure against liquefaction. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 65–70 Sano M, Shimoda M, Matsuo O, Koseki J (1996) Microfine cement grouting as a countermeasure against liquefaction. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 65–70
go back to reference Santagata MC, Collepardi M (1998) Selection of cement-based grouts for soil treatment. In: Johnsen L, Berry D (eds) Proceedings of the geo-congress’98. Boston, ASCE GSP 80, pp 177–195 Santagata MC, Collepardi M (1998) Selection of cement-based grouts for soil treatment. In: Johnsen L, Berry D (eds) Proceedings of the geo-congress’98. Boston, ASCE GSP 80, pp 177–195
go back to reference Santagata MC, Bonora G, Collepardi M (1997) Superplasticized microcement grouts. In: Proceedings of the CANMET—ACI conference on superplasticizers and other admixtures in concrete. Rome, pp 177–195 Santagata MC, Bonora G, Collepardi M (1997) Superplasticized microcement grouts. In: Proceedings of the CANMET—ACI conference on superplasticizers and other admixtures in concrete. Rome, pp 177–195
go back to reference Schwarz LG, Chirumalla M (2007) Effect of injection pressure on permeability and strength of microfine cement grouted sand. In: Proceedings of geo-denver 2007—grouting for ground improvement: innovative concepts and applications. Denver, ASCE GSP 168 Schwarz LG, Chirumalla M (2007) Effect of injection pressure on permeability and strength of microfine cement grouted sand. In: Proceedings of geo-denver 2007—grouting for ground improvement: innovative concepts and applications. Denver, ASCE GSP 168
go back to reference Schwarz LG, Krizek RJ (1994) Effect of preparation technique on permeability and strength of cement-grouted sand. Geotech Test J 17:434–443CrossRef Schwarz LG, Krizek RJ (1994) Effect of preparation technique on permeability and strength of cement-grouted sand. Geotech Test J 17:434–443CrossRef
go back to reference Schwarz LG, Krizek RJ (2006) Hydrocarbon residuals and containment in microfine cement grouted sand. J Mater Civ Eng 18:214–228CrossRef Schwarz LG, Krizek RJ (2006) Hydrocarbon residuals and containment in microfine cement grouted sand. J Mater Civ Eng 18:214–228CrossRef
go back to reference Shibata H (1996) Study on long-term strength properties of suspension grouts with ultra-fine-grain materials. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 71–76 Shibata H (1996) Study on long-term strength properties of suspension grouts with ultra-fine-grain materials. In: Yonekura R, Terashi M, Shibazaki M (eds) Proceedings of the conference on grouting and deep mixing. Tokyo, Balkema, Rotterdam, vol 1, pp 71–76
go back to reference Vipulanandan C, Shenoy S (1992) Properties of cement grouts and grouted sands with additives. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 500–511 Vipulanandan C, Shenoy S (1992) Properties of cement grouts and grouted sands with additives. In: Borden RH, Holtz RD, Juran I (eds) Proceedings of the conference on grouting, soil improvement and geosynthetics. New Orleans, ASCE GSP 30, vol 1, pp 500–511
go back to reference Zebovitz S, Krizek RJ, Atmatzidis DK (1989) Injection of fine sands with very fine cement grout. J Geotech Eng 115:1717–1733CrossRef Zebovitz S, Krizek RJ, Atmatzidis DK (1989) Injection of fine sands with very fine cement grout. J Geotech Eng 115:1717–1733CrossRef
Metadata
Title
Factors Affecting Engineering Properties of Microfine Cement Grouted Sands
Authors
I. N. Markou
A. I. Droudakis
Publication date
01-08-2013
Publisher
Springer Netherlands
Published in
Geotechnical and Geological Engineering / Issue 4/2013
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-013-9631-9

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