When occurred on site static or flow type liquefaction could result in catastrophic consequences due to its sudden occurrence with large strains. Presented here is an experimental study based on monotonic undrained triaxial compression tests conducted on three clean sands and their mixtures with three different non-plastic silts at three different fines contents ( <= 25%). The results demonstrate that base sand gradation has significant influence on the static liquefaction potential of clean and silty sands. It was observed that clean sands become more liquefiable as their mean grain size got smaller and/or they became more uniform. However, it was found that the order of liquefaction resistance of the same base sands were reversed when they were mixed with silt (i.e. resulting silty sands become more liquefiable as the mean grain size of base sand got larger and/or base sand became relatively well graded). Possible reason for such a reversed behavior was hypothesized and then experimentally justified with extra tests. It was also found that the influence of base sand gradation on static liquefaction of loose specimens was most significant at low fines content (e.g. 5%) and almost erased at relatively high fines contents (e.g. 25%). In the last part of the study, the relationship between the normalized peak deviator stress (q(peak)/ sigma'(3c)) and coefficient of uniformity (CU) is discussed. It was shown that unlike clean sands, for which liquefaction potential decreases with increasing CU, the liquefaction potential of sand-silt mixtures reconstituted in the laboratory increases with increasing coefficient of uniformity (i.e. technically as they became more well graded). Two equations were proposed to represent the discussed relationship between q(peak)/sigma'(3c) and CU; one for stable and temporarily liquefied specimens, the other for liquefied specimens. Finally, the applicability of these equations to other types of silty sands in literature was shown. (C) 2016 Elsevier Ltd. All rights reserved.
机构:
Univ S Australia, Sch Nat & Built Environm, Adelaide, SA 5095, Australia
Univ S Australia, Barbara Hardy Inst, Adelaide, SA 5095, AustraliaUniv S Australia, Sch Nat & Built Environm, Adelaide, SA 5095, Australia
机构:
Ecole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
Univ Paris Saclay, DM2S, Commissariat Energie Atom, DEN,DANS, F-91191 Gif Sur Yvette, FranceEcole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
Zhu, Zhehao
Zhang, Feng
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Ecole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, FranceEcole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
Zhang, Feng
Dupla, Jean-Claude
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Ecole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, FranceEcole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
Dupla, Jean-Claude
Canou, Jean
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Ecole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, FranceEcole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
Canou, Jean
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Foerster, Evelyne
Peng, Qingyun
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Ecole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, FranceEcole Ponts ParisTech, Lab Navier CERMES, 6-8 Av Blaise Pascal, F-77455 Marne La Vallee 2, France
机构:
Saâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, BlidaSaâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, Blida
Hazout L.
El-Abidine Zitouni Z.
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Saâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, BlidaSaâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, Blida
El-Abidine Zitouni Z.
Belkhatir M.
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Laboratory of Materials Sciences and Environment, Hassiba Benbouali University of Chlef, BP 151, Route de Sendjes, Chlef
Laboratory of Foundation Engineering, Soil and Rock Mechanics, Department of Civil and Environmental Engineering Ruhr-Universität Bochum, BochumSaâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, Blida
Belkhatir M.
Schanz T.
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Laboratory of Foundation Engineering, Soil and Rock Mechanics, Department of Civil and Environmental Engineering Ruhr-Universität Bochum, BochumSaâd Dahlab University of Blida, Faculty of Technology, Civil Engineering Department, B.P 270 RP, Route de Soumaa, Blida
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Univ Tokyo, Dept Civil Engn, Tokyo 1138654, Japan
Univ Wollongong, Ctr Geomech & Railway Engn, Wollongong, NSW 2522, AustraliaUniv Tokyo, Dept Civil Engn, Tokyo 1138654, Japan
Chiaro, Gabriele
Koseki, Junichi
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Univ Tokyo, Inst Ind Sci, Tokyo 1138654, JapanUniv Tokyo, Dept Civil Engn, Tokyo 1138654, Japan
Koseki, Junichi
Sato, Takeshi
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机构:Univ Tokyo, Dept Civil Engn, Tokyo 1138654, Japan
机构:
Univ S Australia, Sch Nat & Built Environm, Adelaide, SA 5095, Australia
Univ S Australia, Barbara Hardy Inst, Adelaide, SA 5095, AustraliaUniv S Australia, Sch Nat & Built Environm, Adelaide, SA 5095, Australia
Rahman, M. M.
Lo, S. R.
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Univ New S Wales, Australian Def Force Acad, Canberra, ACT 2600, AustraliaUniv S Australia, Sch Nat & Built Environm, Adelaide, SA 5095, Australia