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Titlebook: Estuarine Cohesive Sediment Dynamics; Proceedings of a Wor Ashish J. Mehta Conference proceedings 1986 Springer-Verlag New York, Inc. 1986

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Vertical Transport in Fine-Grained Suspension and Newly-Deposited Sediment,bed fluxes on the vertical structures of overlying turbulent suspensions. Analytical and numerical approaches to examine vertical transport relationships were reviewed. Numerical model sensitivity tests were used to determine the behavior of turbulent suspensions. Vertical variations in turbulent su
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The Transition from Sediment Suspension to Settling Bed, non- Newtonian with increasing concentration, until the sediment particles or floes are able to establish an interacting framework. As the concentration or density increases further, the characteristics of the system are controlled more and more by the characteristics of the soil matrix, with incre
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An Electrical Method to Measure In-Situ Sediment Densities,erface and the densities of the substrata. Devices that are presently used to locate the bed surface, directly or indirectly, depend on the density or shear strength of the sediment. However, the accuracy that is required for determining the mass of sediment on the bed and in motion precludes the us
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Influence of Biota on Erodibility of Sediments,ect sediment erodibility. Cohesive sediments are affected by a variety of factors, many of which are in turn affected by biota. These include pH, organic content, and chemical changes associated with changes in redox potential. The few studies that demonstrate or quantify the influence of entire com
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Characterization of Cohesive Sediment Properties and Transport Processes in Estuaries,ategories of measurement are required — those for characterizing the physico-chemical properties of the sediment and the fluid, and those for quantifying the various relationships governing the transport processes. Sediment properties are specified by the grain size, mineralogical composition, organ
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Estuarial Sediment Bed Model,scribed. The model is divided into three bed sections: unconsolidated stationary suspensions, partially consolidated beds, and settled (fully consolidated) beds. The model is further divided into a finite number of strata in order to account for repeated periods of deposition, as typically occur in
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Interaction Between Surface Waves and Muddy Bottom Sediments,y motion. This motion can be described as a “mud-wave” and causes surface wave properties to vary from those that occur over a rigid bottom. Theoretical studies have attempted to describe this interaction using a variety of soil models, i.e., viscous fluid, elastic solid, viscoelastic material and n
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