• Title of article

    Along channel flow and sediment dynamics at North Inlet, South Carolina

  • Author/Authors

    Christopher A. Wargo، نويسنده , , Richard Styles، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    14
  • From page
    669
  • To page
    682
  • Abstract
    In May of 2005, an observational program was carried out to investigate the along channel hydrodynamics and suspended sediment transport patterns at North Inlet, South Carolina. Along channel variability, which is important in establishing sediment transport pathways, has not been characterized for this system. Measurements of water column currents, salinity, bed sediment, suspended sediment concentration, and particle size distribution were obtained over a complete tidal cycle along the thalweg of the inlet entrance. Along channel currents, shear stress and bed sediment distributions vary significantly in space and time along a 3 km section bracketing the inlet throat. Most of the variability is consistent with geomorphic controls such as bed elevation variability and channel width. The highest velocities, shear stresses, suspended sediment concentration and bed sediment grain size are observed in the narrowest section of the inlet throat. Magnitudes systematically decrease along the channel toward the marsh as changes in channel geometry and branching reduces flow energy. Due to tidal asymmetry, the ebb phase contains significantly higher currents and associated sediment transport. Over the complete tidal cycle, depth integrated transport is directed towards the marsh landward of the intersection of Town and Debidue Creek. In contrast, net transport is out of the inlet seaward of this intersection. Sediment grain size distributions show 35% more material less than 63 mm on flood, suggesting net landward transport of fines.
  • Keywords
    sea level changes , sediment transport , coastal inlets , inlet hydrodynamics , South Carolina , North Inlet , acoustic backscatterRegional terms: USA
  • Journal title
    Estuarine, Coastal and Shelf Science
  • Serial Year
    2007
  • Journal title
    Estuarine, Coastal and Shelf Science
  • Record number

    953949