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Statistical and Spectral Analysis of Wind Characteristics Relevant to Wind Energy Assessment Using Tower Measurements in Complex Terrain
Author(s) -
Radian Belu,
Darko Koračin
Publication year - 2013
Publication title -
journal of wind energy
Language(s) - English
Resource type - Journals
eISSN - 2356-7732
pISSN - 2314-6249
DOI - 10.1155/2013/739162
Subject(s) - wind speed , wind power , environmental science , meteorology , weibull distribution , terrain , maximum sustained wind , wind profile power law , turbulence kinetic energy , tower , wind resource assessment , wind direction , grid , wind gradient , turbulence , geology , geography , geodesy , engineering , mathematics , statistics , cartography , archaeology , electrical engineering
The main objective of the study was to investigate spatial and temporal characteristics of the wind speed and direction in complex terrain that are relevant to wind energy assessment and development, as well as to wind energy system operation, management, and grid integration. Wind data from five tall meteorological towers located in Western Nevada, USA, operated from August 2003 to March 2008, used in the analysis. The multiannual average wind speeds did not show significant increased trend with increasing elevation, while the turbulence intensity slowly decreased with an increase were the average wind speed. The wind speed and direction were modeled using the Weibull and the von Mises distribution functions. The correlations show a strong coherence between the wind speed and direction with slowly decreasing amplitude of the multiday periodicity with increasing lag periods. The spectral analysis shows significant annual periodicity with similar characteristics at all locations. The relatively high correlations between the towers and small range of the computed turbulence intensity indicate that wind variability is dominated by the regional synoptic processes. Knowledge and information about daily, seasonal, and annual wind periodicities are very important for wind energy resource assessment, wind power plant operation, management, and grid integration

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