Powering the 21st century by wind energy—Options, facts, figures

Author:

Rohrig K.1ORCID,Berkhout V.1ORCID,Callies D.1,Durstewitz M.1ORCID,Faulstich S.1ORCID,Hahn B.1,Jung M.1,Pauscher L.1,Seibel A.1,Shan M.1,Siefert M.1,Steffen J.1,Collmann M.2,Czichon S.2,Dörenkämper M.2ORCID,Gottschall J.2ORCID,Lange B.2ORCID,Ruhle A.2,Sayer F.2,Stoevesandt B.2,Wenske J.2

Affiliation:

1. Fraunhofer IEE, Königstor 59, 34119 Kassel, Germany

2. Fraunhofer IWES, Am Seedeich 45, 27572 Bremerhaven, Germany

Publisher

AIP Publishing

Subject

General Physics and Astronomy

Reference424 articles.

1. M. M. Hand , “IEA Wind TCP Task 26–Wind technology, cost, and performance trends in Denmark, the European Union, Germany, Ireland, Norway, Sweden, and the United States: 2008–2016,” Report No. NREL/TP-6A20.71844, 2015.

2. R. Wiser , K. Jenni , J. Seel , E. Baker , M. Hand , E. Lantz , and A. Smith , “ Forecasting wind energy costs and cost drivers: The views of the world’s leading experts authors,” Reference No. LBNL-1005717 (2016), p. 87.

3. R. Wiser and M. Bolinger , https://www.energy.gov/sites/prod/files/2018/08/f54/2017_wind_technologies_market_report_8.15.18.v2.pdf for Wind Technology Market Report 2017.

4. Use and limitations of learning curves for energy technology policy: A component-learning hypothesis

5. Renewable electricity production costs—A framework to assist policy-makers' decisions on price support

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