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Erschienen in: Geotechnical and Geological Engineering 5/2013

01.10.2013 | Original paper

Undrained Shear Strength of Normally Consolidated and Overconsolidated Clays from Pressuremeter Tests: A Case Study

verfasst von: Ali Soleimanbeigi

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 5/2013

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Abstract

Undrained shear strength (su) of foundation soil of Marquette interchange near Milwaukee, Wisconsin was evaluated from the results of a number of pressuremeter tests conducted on normally consolidated (NC) organic silts and overconsolidated (OC) silty clay. The su-values were interpreted from traditional closed-form methods. The pressuremeter geometry and test sequence as well as response of the soil profiles were also simulated using axisymmetric finite element (FE) method with Cam-Clay soil model. The Cam-Clay model parameters were estimated from laboratory tests on undisturbed soil samples. Results show that the su estimated from the rate of cavity pressure change with volumetric strain (referred to as direct traditional method) is almost twice the su estimated from an indirect traditional method that estimates su from shear modulus, in situ horizontal stress, and ultimate cavity pressure obtained from the cavity pressure curves. The su-values predicted from the FE models are lower than those estimated from the traditional methods and shows that the assumption of infinite pressuremeter length in traditional methods results in overprediction of undrained shear strength by a factor of 1.5 for NC clay and 2.2 for OC clay. The results of finite element analysis considering Cam-Clay soil model and finite length for pressuremeters suggest the undrained shear strength of 63 ± 7 kPa for NC organic silt and 259 ± 68 kPa for OC silty clay.

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Literatur
Zurück zum Zitat ABAQUS Theory manual, version 6.8 (2008) Hibbit, Karlsson and Sorensson, Inc ABAQUS Theory manual, version 6.8 (2008) Hibbit, Karlsson and Sorensson, Inc
Zurück zum Zitat Baquelin F, Jézéquel JF, Shields DH (1978) The pressuremeter and foundation engineering. Trans Tech Publications, Clausthual Baquelin F, Jézéquel JF, Shields DH (1978) The pressuremeter and foundation engineering. Trans Tech Publications, Clausthual
Zurück zum Zitat Carter JP, Randolph MF, Wroth CP (1979) Stress and pore pressure changes in clay during and after the expansion of a cylindrical cavity. Int J Numer Anal Meth Geomech 3:305–322CrossRef Carter JP, Randolph MF, Wroth CP (1979) Stress and pore pressure changes in clay during and after the expansion of a cylindrical cavity. Int J Numer Anal Meth Geomech 3:305–322CrossRef
Zurück zum Zitat Gibson RE, Anderson WF (1961) In situ measurement of soil properties with the pressuremeter. Civil Eng Public Works Rev 56(658):6l5–6l8 Gibson RE, Anderson WF (1961) In situ measurement of soil properties with the pressuremeter. Civil Eng Public Works Rev 56(658):6l5–6l8
Zurück zum Zitat Houlsby GT, Carter JP (1993) The effects of pressuremeter geometry on the results of tests in clay. Géotechnique 43(4):567–576CrossRef Houlsby GT, Carter JP (1993) The effects of pressuremeter geometry on the results of tests in clay. Géotechnique 43(4):567–576CrossRef
Zurück zum Zitat Ladayani B (1973) Expansion of a cavity in a saturated clay medium. J Soil Mech Found Eng Div ASCE 89(SM4):127–161 Ladayani B (1973) Expansion of a cavity in a saturated clay medium. J Soil Mech Found Eng Div ASCE 89(SM4):127–161
Zurück zum Zitat Mair RJ, Wood DM (1987) Pressuremeter testing: methods and interpretation. CIRIA Ground Engineering Report: In-Situ Testing. Butterworths, London Mair RJ, Wood DM (1987) Pressuremeter testing: methods and interpretation. CIRIA Ground Engineering Report: In-Situ Testing. Butterworths, London
Zurück zum Zitat Mayne PW, Kulhawy FH (1982) Ko-OCR relationships in soils. J Geotech Eng ASCE 108(6):851–872 Mayne PW, Kulhawy FH (1982) Ko-OCR relationships in soils. J Geotech Eng ASCE 108(6):851–872
Zurück zum Zitat Ménard L (1956) An apparatus for measuring the strength of soils in place. Master of Science Thesis, University of Illinois Ménard L (1956) An apparatus for measuring the strength of soils in place. Master of Science Thesis, University of Illinois
Zurück zum Zitat Palmer AC (1972) Undrained plane-strain expansion of a cylindrical cavity in clay: a simple interpretation of the pressuremeter test. Geotechnique 22(3):451–457CrossRef Palmer AC (1972) Undrained plane-strain expansion of a cylindrical cavity in clay: a simple interpretation of the pressuremeter test. Geotechnique 22(3):451–457CrossRef
Zurück zum Zitat Robertson PK (1986) In-situ testing and its application to foundation engineering. Can Geotech J 23(4):573–584CrossRef Robertson PK (1986) In-situ testing and its application to foundation engineering. Can Geotech J 23(4):573–584CrossRef
Zurück zum Zitat Roscoe KH, Burland JB (1968) On the generalised stress-strain behavior of wet clay. In: Heyman J, Leckie FA (eds) Engineering plasticity. Cambridge University Press, Cambridge, pp 535–609 Roscoe KH, Burland JB (1968) On the generalised stress-strain behavior of wet clay. In: Heyman J, Leckie FA (eds) Engineering plasticity. Cambridge University Press, Cambridge, pp 535–609
Zurück zum Zitat Roscoe KH, Schofield AN (1963) Mechanical behavior of an idealized “wet clay”. In: Proceedings of European conference on soil mechanics and foundation engineering. Wiesbaden, pp 47–54 Roscoe KH, Schofield AN (1963) Mechanical behavior of an idealized “wet clay”. In: Proceedings of European conference on soil mechanics and foundation engineering. Wiesbaden, pp 47–54
Zurück zum Zitat Salgado R (2008) The engineering of foundations. McGraw-Hill, New York Salgado R (2008) The engineering of foundations. McGraw-Hill, New York
Zurück zum Zitat Shuttle DA, Jefferies MG (1995) A practical geometry correction for interpreting pressuremeter tests in clay. Géotechnique 45(3):549–553CrossRef Shuttle DA, Jefferies MG (1995) A practical geometry correction for interpreting pressuremeter tests in clay. Géotechnique 45(3):549–553CrossRef
Zurück zum Zitat Wood DM (1990) Soil behavior and critical state soil mechanics. Cambridge University Press, Cambridge Wood DM (1990) Soil behavior and critical state soil mechanics. Cambridge University Press, Cambridge
Zurück zum Zitat Wroth CP (1982) British experience with the self boring pressuremeter. In: Proceedings of symposium on the pressuremeter and its marine applications, pp 143–164 Wroth CP (1982) British experience with the self boring pressuremeter. In: Proceedings of symposium on the pressuremeter and its marine applications, pp 143–164
Zurück zum Zitat Yeung SK, Carter JP (1990). Interpretation of the pressuremeter test in clay allowing for membrane end effects and material non-homogeneity. In: Proceedings of 3rd international symposium on pressuremeters, Oxford, pp 199–208 Yeung SK, Carter JP (1990). Interpretation of the pressuremeter test in clay allowing for membrane end effects and material non-homogeneity. In: Proceedings of 3rd international symposium on pressuremeters, Oxford, pp 199–208
Zurück zum Zitat Yu HS (1990) Cavity expansion theory and its application to the analysis of pressuremeters. PhD Thesis, University of Oxford Yu HS (1990) Cavity expansion theory and its application to the analysis of pressuremeters. PhD Thesis, University of Oxford
Zurück zum Zitat Yu HS (2000) Cavity expansion methods in geomechanics. Kluwer Academic Publishers, LondonCrossRef Yu HS (2000) Cavity expansion methods in geomechanics. Kluwer Academic Publishers, LondonCrossRef
Zurück zum Zitat Yu HS, Charles MT, Khong CD (2005) Analysis of presuremeter geometry effects in clay using critical state models. Int J Numer Anal Meth Geomech 29:845–859CrossRef Yu HS, Charles MT, Khong CD (2005) Analysis of presuremeter geometry effects in clay using critical state models. Int J Numer Anal Meth Geomech 29:845–859CrossRef
Metadaten
Titel
Undrained Shear Strength of Normally Consolidated and Overconsolidated Clays from Pressuremeter Tests: A Case Study
verfasst von
Ali Soleimanbeigi
Publikationsdatum
01.10.2013
Verlag
Springer Netherlands
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 5/2013
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-013-9675-x

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