Advances in Science and Research (Jun 2020)

Numerical modelling of the wind over forests: roughness versus canopy drag

  • A. Sogachev,
  • D. Cavar,
  • M. Kelly,
  • E. Dellwik,
  • T. Klaas,
  • P. Kühn

DOI
https://doi.org/10.5194/asr-17-53-2020
Journal volume & issue
Vol. 17
pp. 53 – 61

Abstract

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Parameterizing the effect of vertically-distributed vegetation through an effective roughness (z0,eff) – whereby momentum loss through a three-dimensional foliage volume is represented as momentum loss over an area at one vertical level – can facilitate the use of forest data in flow models, to any level of detail, and simultaneously reduce computational cost. Results of numerical experiments and comparison with observations show that a modelling approach based on z0,eff can estimate wind speed and turbulence levels over forested areas, at heights of interest for wind energy applications (∼60 m and higher), but only above flat terrain. Caution must be exercised in the application of such a model to zones of forest edges. Advanced flow models capable of incorporating local (distributed) drag forces are recommended for complex terrain covered by forest.