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A New Formulation For Rotor Equivalent Wind Speed For Wind Resource Assessment and Wind Power Forecasting

Abstract

The spurt of growth in the wind energy industry has led to the development of many new technologies to study this energy resource and improve the efficiency of wind turbines. One of the key factors in wind farm characterization is the prediction of power output of the wind farm that is a strong function of the turbulence in the wind speed and direction. A new formulation for calculating the expected power from a wind turbine in the presence of wind shear, turbulence, directional shear and direction fluctuations is presented. It is observed that wind shear, directional shear and direction fluctuations reduce the power producing capability, while turbulent intensity increases it. However, there is a complicated superposition of these effects that alters the characteristics of the power estimate that indicates the need for the new formulation. Data from two field experiments is used to estimate the wind power using the new formulation, and results are compared to previous formulations. Comparison of the estimates of available power from the new formulation is not compared to actual power outputs and will be a subject of future work. © 2015 The Authors. Wind Energy published by John Wiley & Sons, Ltd.

Article / Publication Data
Active/Online
YES
Volume
19
Available Metadata
Accepted On
August 23, 2015
DOI ↗
Early Online Release
July 12, 2016
Fiscal Year
NOAA IR URL ↗
Peer Reviewed
YES
Publication Name
Wind Energy
Published On
August 01, 2016
Publisher Name
Wiley Online Library
Print Volume
19
Print Number
8
Page Range
1439-1452
Issue
8
Submitted On
October 20, 2014
URL ↗

Institutions

Not available

Authors

Authors who have authored or contributed to this publication.