Optimum Selection of Wind Turbines Using Normalized Power and Capacity Factor Curves

Authors

  • Firas A. Hadi Department Environment Science, College of Energy and Environmental Sciences, Al-karkh University of Science, Baghdad, Iraq
  • Zaid F. Makki Alnahrain Centre for Strategic Studies, Baghdad, Iraq
  • Rafa A. Al-Baldawi College of Energy and Environmental Sciences, Al-karkh University of Science, Baghdad, Iraq

DOI:

https://doi.org/10.24996/ijs.2021.62.8.33

Keywords:

Capacity factor, Normalized power, Turbine performance index

Abstract

The main objective of this paper is present a novel method to choice a certain wind turbine for a specific site by using normalized power and capacity factor curves. The site matching is based on identifying the optimum turbine rotation speed parameters from turbine performance index (TPI) curve, which is obtained from the higher values of normalized power and capacity factor curves. Wind Turbine Performance Index a new ranking parameter, is defined to optimally match turbines to wind site. The relations (plots) of normalized power, capacity factor, and turbine performance index versus normalized rated wind speed are drawn for a known value of Weibull shape parameter of a site, thus a superior method is used for Weibull parameters estimation which is called Equivalent Energy Method (EEM).

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Published

2021-08-31

Issue

Section

Remote Sensing

How to Cite

[1]
F. A. . Hadi, Z. F. . Makki, and R. A. . Al-Baldawi, “Optimum Selection of Wind Turbines Using Normalized Power and Capacity Factor Curves”, Iraqi Journal of Science, vol. 62, no. 8, pp. 2813–2822, Aug. 2021, doi: 10.24996/ijs.2021.62.8.33.
Crossref
3
Scopus
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