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Numerical Modeling Framework for Cohesive Sediment Transport Driven by Waves and Tidal Currents.

机译:波浪和潮流驱动的粘性泥沙输移数值模拟框架。

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The report of this objectives is to develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-cohesive sediment transport in the fluvial, estuarine and coastal environments: (1) Developing a 3D turbulence-resolving numerical model for fine sediment transport in the oscillatory boundary layer in order to understand how turbulence-sediment interactions can determine the state of muddy seabed (transport modes); (2) Studying the attenuation of turbulence due to the presence of sediment via the interplay between sediment-induced density stratification and enhanced viscosity (rheological stress); (3) Extending the existing turbulence-resolving numerical study to coarser grain (sand) and poly- dispersed (e.g., size, density and shape) transport based on fourway- coupled Eulerian and Euler-Lagrangian numerical frameworks.

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