• Title of article

    Flow deflection over a foredune

  • Author/Authors

    Hesp، نويسنده , , Patrick A. and Smyth، نويسنده , , Thomas A.G. and Nielsen، نويسنده , , Peter and Walker، نويسنده , , Ian J. and Bauer، نويسنده , , Bernard O. and Davidson-Arnott، نويسنده , , Robin، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2015
  • Pages
    11
  • From page
    64
  • To page
    74
  • Abstract
    Flow deflection of surface winds is common across coastal foredunes and blowouts. Incident winds approaching obliquely to the dune toe and crestline tend to be deflected towards a more crest-normal orientation across the stoss slope of the foredune. This paper examines field measurements for obliquely incident winds, and compares them to computational fluid dynamics (CFD) modelling of flow deflection in 10° increments from onshore (0°) to alongshore (90°) wind approach angles. The mechanics of flow deflection are discussed, followed by a comparative analysis of measured and modelled flow deflection data that shows strong agreement. CFD modelling of the full range of onshore to alongshore incident winds reveals that deflection of the incident wind flow is minimal at 0° and gradually increases as the incident wind turns towards 30° to the dune crest. The greatest deflection occurs between 30° and 70° incident to the dune crest. The degree of flow deflection depends secondarily on height above the dune surface, with the greatest effect near the surface and toward the dune crest. Topographically forced flow acceleration (“speed-up”) across the stoss slope of the foredune is greatest for winds less than 30° (i.e., roughly perpendicular) and declines significantly for winds with more oblique approach angles. There is less lateral uniformity in the wind field when the incident wind approaches from > 60° because the effect of aspect ratio on topographic forcing and streamline convergence is less pronounced.
  • Keywords
    Foredune , Flow deflection , computational fluid dynamics (CFD) , Oblique winds
  • Journal title
    Geomorphology
  • Serial Year
    2015
  • Journal title
    Geomorphology
  • Record number

    2367677