Journal of Hydraulic Engineering · 2004 · 172 citations · 18 references
Geotechnical EngineeringLayer ThicknessEquilibrium Scour DepthBridge DesignEngineeringSediment QualitySedimentationSteady FlowCivil EngineeringSediment ProcessScourSedimentologyConstruction EngineeringHydraulic EngineeringStructural EngineeringSediment Transport
The study aims to develop and validate methods for estimating scour depth evolution around bridge piers in nonuniform sediment under steady and unsteady flow conditions. Experiments were conducted under steady and unsteady clear‑water scour with uniform and nonuniform sediments, and a mixing‑layer based approach was used to derive regression formulas and models for equilibrium and evolving scour depths.
Experiments of bridge pier scour are carried out under steady and unsteady clear-water scour conditions with uniform and nonuniform sediments. Around the pier nose, the sediment size variation of surface bed materials is investigated, and a regressed formula is obtained for estimating the mixing layer thickness in terms of median sediment size and geometric standard deviation of grain size distribution. A method based on the mixing layer concept is developed for calculating the equilibrium scour depth in nonuniform sediment. Based on the experimental data of scour rate, a model simulating the scour-depth evolution under steady flow in nonuniform sediment is presented. By analyzing experimental data, a scheme is proposed for computing the scour-depth evolution under unsteady flow.
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Local Scour Around Cylindrical Piers
H.N.C. Breusers, Gerard Nicollet, H. W. Shen · Journal of Hydraulic Research · 1977 · 737 citations