3D wind and turbulence characteristics of the atmospheric boundary layer

Barthelmie, R, Crippa, P, Wang, H, Smith, C, Krishnamurthy, R, Choukulkar, A, Calhoun, R, Valyou, D, Marzocca, P, Matthiesen, D, Brown, G and Pryor, S 2014, '3D wind and turbulence characteristics of the atmospheric boundary layer', Bulletin of the American Meteorological Society, vol. 95, no. 5, pp. 743-756.


Document type: Journal Article
Collection: Journal Articles

Title 3D wind and turbulence characteristics of the atmospheric boundary layer
Author(s) Barthelmie, R
Crippa, P
Wang, H
Smith, C
Krishnamurthy, R
Choukulkar, A
Calhoun, R
Valyou, D
Marzocca, P
Matthiesen, D
Brown, G
Pryor, S
Year 2014
Journal name Bulletin of the American Meteorological Society
Volume number 95
Issue number 5
Start page 743
End page 756
Total pages 14
Publisher American Meteorological Society
Abstract The 3D Wind experiment integrates model simulations and measurements from remote sensing, traditional, and unmanned aerial vehicle platforms to quantify wind components over the area of a large wind farm to heights of 200 m. The 3D wind and turbulence characteristics of the atmospheric boundary layer experiment focus on collection and integration of data from remote sensing and in situ instruments to develop precise and accurate characterization of wind and turbulence in the lowest 200 m of the atmospheric boundary layer (ABL). This research is conducted within the context of applications to wind resource characterization, wind farm optimization, and wind farm aerodynamics for power production and fatigue load quantification. These end uses require data over a range of temporal scales from individual turbines through wind farms and clusters of wind farms.
DOI - identifier 10.1175/BAMS-D-12-00111.1
Copyright notice © 2014 American Meteorological Society
ISSN 0003-0007
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