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Wind Power Electricity: The Bigger the Turbine, The Greener the Electricity?
Author(s) -
Marloes Caduff,
Mark A. J. Huijbregts,
Hans-Joerg Althaus,
Annette Koehler,
Stefanie Hellweg
Publication year - 2012
Publication title -
environmental science and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.851
H-Index - 397
eISSN - 1520-5851
pISSN - 0013-936X
DOI - 10.1021/es204108n
Subject(s) - wind power , electricity , turbine , renewable energy , electricity generation , life cycle assessment , environmental science , environmental engineering , meteorology , environmental economics , engineering , production (economics) , power (physics) , economics , mechanical engineering , electrical engineering , geography , physics , quantum mechanics , macroeconomics
Wind energy is a fast-growing and promising renewable energy source. The investment costs of wind turbines have decreased over the years, making wind energy economically competitive to conventionally produced electricity. Size scaling in the form of a power law, experience curves and progress rates are used to estimate the cost development of ever-larger turbines. In life cycle assessment, scaling and progress rates are seldom applied to estimate the environmental impacts of wind energy. This study quantifies whether the trend toward larger turbines affects the environmental profile of the generated electricity. Previously published life cycle inventories were combined with an engineering-based scaling approach as well as European wind power statistics. The results showed that the larger the turbine is, the greener the electricity becomes. This effect was caused by pure size effects of the turbine (micro level) as well as learning and experience with the technology over time (macro level). The environmental progress rate was 86%, indicating that for every cumulative production doubling, the global warming potential per kWh was reduced by 14%. The parameters, hub height and rotor diameter were identified as Environmental Key Performance Indicators that can be used to estimate the environmental impacts for a generic turbine.

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