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2018 | OriginalPaper | Buchkapitel

Constitutive Modeling of the Cyclic Loading Response of Low Plasticity Fine-Grained Soils

verfasst von : Ross W. Boulanger, Adam B. Price, Katerina Ziotopoulou

Erschienen in: Proceedings of GeoShanghai 2018 International Conference: Fundamentals of Soil Behaviours

Verlag: Springer Singapore

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Abstract

Calibrations of the PM4Silt constitutive model are presented for two low-plasticity fine-grained soils that exhibit significantly different cyclic loading behaviors. The PM4Silt model is a stress-ratio controlled, critical state compatible, bounding surface plasticity model that was recently developed for representing low-plasticity silts and clays in geotechnical earthquake engineering applications. The low-plasticity clayey silt and silty clay examined herein were reconstituted mixtures of silica silt and kaolin with plasticity indices (PIs) of 6 and 20. Undrained monotonic and undrained cyclic direct simple shear (DSS) tests were performed on normally consolidated, slurry deposited specimens. Calibration of the PM4Silt model was based on the monotonic and cyclic DSS test data, plus empirical relationships for strain-dependent secant shear moduli and equivalent damping ratios. The calibration process and performance of the PM4Silt constitutive model are described for each soil. The results illustrate that PM4Silt is capable of reasonably approximating a range of monotonic and cyclic loading behaviors important to many earthquake engineering applications and is relatively easy to calibrate.

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Literatur
Zurück zum Zitat Boulanger, R.W., Beaty, M.H.: Seismic deformation analyses of embankment dams: a reviewer’s checklist. In: Proceedings, Celebrating the Value of Dams and Levees – Yesterday, Today and Tomorrow, 36th USSD Annual Meeting and Conference, United States Society on Dams, Denver, CO, pp. 535–546 (2016) Boulanger, R.W., Beaty, M.H.: Seismic deformation analyses of embankment dams: a reviewer’s checklist. In: Proceedings, Celebrating the Value of Dams and Levees – Yesterday, Today and Tomorrow, 36th USSD Annual Meeting and Conference, United States Society on Dams, Denver, CO, pp. 535–546 (2016)
Zurück zum Zitat Boulanger, R.W., Ziotopoulou, K.: PM4Sand (Version 3): a sand plasticity model for earthquake engineering applications, 112 pp. Report No. UCD/CGM-15/01, Center for Geotechnical Modeling, Department of Civil and Environmental Engineering, University of California, Davis, CA (2015) Boulanger, R.W., Ziotopoulou, K.: PM4Sand (Version 3): a sand plasticity model for earthquake engineering applications, 112 pp. Report No. UCD/CGM-15/01, Center for Geotechnical Modeling, Department of Civil and Environmental Engineering, University of California, Davis, CA (2015)
Zurück zum Zitat Boulanger, R.W., Ziotopoulou, K.: PM4Silt (Version 1): a silt plasticity model for earthquake engineering applications. Report No. UCD/CGM-18/01, Center for Geotechnical Modeling, Department of Civil and Environmental Engineering, University of California, Davis, CA (2018) Boulanger, R.W., Ziotopoulou, K.: PM4Silt (Version 1): a silt plasticity model for earthquake engineering applications. Report No. UCD/CGM-18/01, Center for Geotechnical Modeling, Department of Civil and Environmental Engineering, University of California, Davis, CA (2018)
Zurück zum Zitat Boulanger, R.W., Ziotopoulou, K.: On NDA practices for evaluating liquefaction effects. In: Proceedings of Geotechnical Earthquake Engineering and Soil Dynamics V, ASCE Geo-Institute, Austin, TX, 10–13 June (2018, in press) Boulanger, R.W., Ziotopoulou, K.: On NDA practices for evaluating liquefaction effects. In: Proceedings of Geotechnical Earthquake Engineering and Soil Dynamics V, ASCE Geo-Institute, Austin, TX, 10–13 June (2018, in press)
Zurück zum Zitat Carlton, B.D., Pestana, J.M.: Small strain shear modulus of high and low plasticity clays and silts. In: 15th World Conference on Earthquake Engineering, Lisbon, Portugal (2012) Carlton, B.D., Pestana, J.M.: Small strain shear modulus of high and low plasticity clays and silts. In: 15th World Conference on Earthquake Engineering, Lisbon, Portugal (2012)
Zurück zum Zitat Itasca: FLAC, Fast Lagrangian Analysis of Continua, User’s Guide, Version 8.0. Itasca Consulting Group, Inc., Minneapolis, MN (2016) Itasca: FLAC, Fast Lagrangian Analysis of Continua, User’s Guide, Version 8.0. Itasca Consulting Group, Inc., Minneapolis, MN (2016)
Zurück zum Zitat Price, A.B., Boulanger, R.W., DeJong, J.T., Parra Bastidas, A.M., Moug, D.: Cyclic strengths and simulated CPT penetration resistances in intermediate soils. In: 6th International Conference on Earthquake Geotechnical Engineering, 14 November, Christchurch, New Zealand (2015) Price, A.B., Boulanger, R.W., DeJong, J.T., Parra Bastidas, A.M., Moug, D.: Cyclic strengths and simulated CPT penetration resistances in intermediate soils. In: 6th International Conference on Earthquake Geotechnical Engineering, 14 November, Christchurch, New Zealand (2015)
Metadaten
Titel
Constitutive Modeling of the Cyclic Loading Response of Low Plasticity Fine-Grained Soils
verfasst von
Ross W. Boulanger
Adam B. Price
Katerina Ziotopoulou
Copyright-Jahr
2018
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-0125-4_1