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Article

Wind Resource and Wind Power Generation Assessment for Education in Engineering

by
Estefania Artigao
1,*,
Antonio Vigueras-Rodríguez
2,
Andrés Honrubia-Escribano
1,
Sergio Martín-Martínez
1 and
Emilio Gómez-Lázaro
1
1
Renewable Energy Research Institute, DIEEAC-ETSIIA, Campus Universitario s/n, Universidad de Castilla-La Mancha, 02071 Albacete, Spain
2
Department of Civil Engineering, Universidad Politécnica de Cartagena, 30203 Cartagena, Spain
*
Author to whom correspondence should be addressed.
Sustainability 2021, 13(5), 2444; https://doi.org/10.3390/su13052444
Submission received: 21 January 2021 / Revised: 16 February 2021 / Accepted: 18 February 2021 / Published: 24 February 2021
(This article belongs to the Special Issue Engineering Education for a Sustainable Energy Future)

Abstract

This paper proposes a practical approach to assess wind energy resource and calculate annual energy production for use on university courses in engineering. To this end, two practical exercises were designed in the open-source software GNU Octave (compatible with MATLAB) using both synthetic and field data. The script used to generate the synthetic data as well as those created to develop the practical exercises are included for the benefit of other educational bodies. With the first exercise the students learn how to characterize the wind resource at the wind turbine hub height and adjust it to the Weibull distribution. Two examples are included in this exercise: one with an appropriate fit and another where the Weibull distribution does not fit properly to the generated data. Furthermore, in this exercise, field data (gathered with a LiDAR remote sensing device) is also used to calculate shear exponents for a proper characterisation of the wind profile. The second exercise consists of the calculation of the annual energy production of a wind power plant, where the students can assess the influence of different factors (wind speed, rotor diameter, rated power, etc.) in the project. The exercises proposed can easily be implemented through either in-class or online teaching modes.
Keywords: energy education; engineering education; sustainability; renewable energy energy education; engineering education; sustainability; renewable energy

Share and Cite

MDPI and ACS Style

Artigao, E.; Vigueras-Rodríguez, A.; Honrubia-Escribano, A.; Martín-Martínez, S.; Gómez-Lázaro, E. Wind Resource and Wind Power Generation Assessment for Education in Engineering. Sustainability 2021, 13, 2444. https://doi.org/10.3390/su13052444

AMA Style

Artigao E, Vigueras-Rodríguez A, Honrubia-Escribano A, Martín-Martínez S, Gómez-Lázaro E. Wind Resource and Wind Power Generation Assessment for Education in Engineering. Sustainability. 2021; 13(5):2444. https://doi.org/10.3390/su13052444

Chicago/Turabian Style

Artigao, Estefania, Antonio Vigueras-Rodríguez, Andrés Honrubia-Escribano, Sergio Martín-Martínez, and Emilio Gómez-Lázaro. 2021. "Wind Resource and Wind Power Generation Assessment for Education in Engineering" Sustainability 13, no. 5: 2444. https://doi.org/10.3390/su13052444

APA Style

Artigao, E., Vigueras-Rodríguez, A., Honrubia-Escribano, A., Martín-Martínez, S., & Gómez-Lázaro, E. (2021). Wind Resource and Wind Power Generation Assessment for Education in Engineering. Sustainability, 13(5), 2444. https://doi.org/10.3390/su13052444

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