To predict sediment transport under oscillatory sheet flow condition, especially for fine sand, is still a challenging research subject in coastal engineering. This paper describes a newly-developed numerical model based on two-phase theory with the use of a one-equation turbulence closure, and its applications in predicting fine sediment suspension in near-prototype oscillatory sheet flow conditions. Model results were compared with comprehensive laboratory measurements of flow velocity and sediment concentration under both symmetrical and asymmetrical oscillatory sheet flows from a large-scale water tunnel. Good agreements between the model results and measurements were achieved and the results demonstrated that the model is capable of reproducing detailed characteristics of sediment entrainment process in the sheet flow regime. The comparisons also revealed the fact that the concentration peaks at flow reversal is associated with the strong vertical sediment transport flux in the pickup layer, which has been widely observed in many laboratory experiments. The effects of flow reversal events on total sediment transport were also discussed. (C) 2008 Elsevier B.V. All rights reserved.
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Univ Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, TunisiaUniv Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, Tunisia
Ben Hamza, Sonia
Ben Kalifa, Rim
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Univ Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, TunisiaUniv Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, Tunisia
Ben Kalifa, Rim
Said, Nejla Mahjoub
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Univ Monastir, Preparatory Inst Engn Studies, LGM, St Ibn El Jazzar, Monastir 5000, TunisiaUniv Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, Tunisia
Said, Nejla Mahjoub
Bournot, Herve
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Univ Aix Marseille, UMR CNRS 7543, IUSTI, 5 St Enrico Fermi, F-13453 Marseille 13, FranceUniv Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, Tunisia
Bournot, Herve
Le Palec, Georges
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Univ Aix Marseille, UMR CNRS 7543, IUSTI, 5 St Enrico Fermi, F-13453 Marseille 13, FranceUniv Monastir, Natl Engn Sch Monastir, LGM, St Ibn El Jazzar, Monastir 5000, Tunisia
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Univ Caen, CNRS, UMR 6143, Lab Continental & Coastal Morphodynam, F-14034 Caen, France
EDF R&D, CETMEF, Joint Res Unit, St Venant Lab Hydraul, F-78400 Chatou, France
ENPC, F-78400 Chatou, FranceUniv Caen, LUSAC, EA 2607, F-50130 Octeville, France
Nguyen, Kim Dan
Guillou, Sylvain
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Univ Caen, LUSAC, EA 2607, F-50130 Octeville, FranceUniv Caen, LUSAC, EA 2607, F-50130 Octeville, France
Guillou, Sylvain
Chauchat, Julien
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Univ Caen, CNRS, UMR 6143, Lab Continental & Coastal Morphodynam, F-14034 Caen, FranceUniv Caen, LUSAC, EA 2607, F-50130 Octeville, France
Chauchat, Julien
Barbry, Nathaly
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Univ Nantes, CNRS, UMR 6183, Lab Genie Civil & Mecan GeM, F-44600 St Nazaire, FranceUniv Caen, LUSAC, EA 2607, F-50130 Octeville, France