Length Scales of the Neutral Wind Profile over Homogeneous Terrain

Author:

Peña Alfredo1,Gryning Sven-Erik2,Mann Jakob2,Hasager Charlotte B.2

Affiliation:

1. Wind Energy Division, Risø National Laboratory for Sustainable Energy, Technical University of Denmark, Roskilde, and Department of Geography and Geology, University of Copenhagen, Copenhagen, Denmark

2. Wind Energy Division, Risø National Laboratory for Sustainable Energy, Technical University of Denmark, Roskilde, Denmark

Abstract

Abstract The wind speed profile for the neutral boundary layer is derived for a number of mixing-length parameterizations, which account for the height of the boundary layer. The wind speed profiles show good agreement with the reanalysis of the Leipzig wind profile (950 m high) and with combined cup–sonic anemometer and lidar measurements (300 m high) performed over flat and homogeneous terrain at Høvsøre, Denmark. In the surface layer, the mixing-length parameterizations agree well with the traditional surface-layer theory, but the wind speed profile is underestimated when the surface-layer scaling is extended to the entire boundary layer, demonstrating the importance of the boundary layer height as a scaling parameter. The turbulence measurements, performed up to 160-m height only at the Høvsøre site, provide the opportunity to derive the spectral-length scales from two spectral models. Good agreement is found between the behaviors of the mixing- and spectral-length scales.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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