Tourismus und Regionalentwicklung in Bayern, Diana Schödl, Windkraft und Tourismus – planerische Erfassung der Konfliktbereiche, in Marius Mayer, Hubert Job, 5 December 2013, Arbeitsgruppe "Tourismus und Regionalentwicklung" der Landesarbeitsgemeinschaft Bayern der ARL, p 125. ff
arxiv.org
Slavik, Kaela; Lemmen, Carsten (9 de maio de 2018). «The large scale impact of offshore wind farm structures on pelagic primary productivity in the southern North Sea». arXiv:1709.02386 [q-bio.PE]
Begoña Guezuraga; Rudolf Zauner; Werner Pölz (janeiro de 2012). «Life cycle assessment of two different 2 MW class wind turbines». Renewable Energy. 37 (1): 37. doi:10.1016/j.renene.2011.05.008
Parisé, J.; Walker, T. R. (2017). «Industrial wind turbine post-construction bird and bat monitoring: A policy framework for Canada». Journal of Environmental Management. 201: 252–259. PMID28672197. doi:10.1016/j.jenvman.2017.06.052
Sovacool, B. K. (2013). «The avian benefits of wind energy: A 2009 update». Renewable Energy. 49: 19–24. doi:10.1016/j.renene.2012.01.074
Guezuraga, Begoña; Zauner, Rudolf; Pölz, Werner (2012). «Life cycle assessment of two different 2 MW class wind turbines». Renewable Energy. 37: 37–44. doi:10.1016/j.renene.2011.05.008
White, S. W. (2007). «Net Energy Payback and CO2 Emissions from Three Midwestern Wind Farms: An Update». Natural Resources Research. 15 (4): 271–81. doi:10.1007/s11053-007-9024-y
Dolan, Stacey L.; Heath, Garvin A. (2012). «Life Cycle Greenhouse Gas Emissions of Utility-Scale Wind Power». Journal of Industrial Ecology. 16: S136–S154. SSRN2051326. doi:10.1111/j.1530-9290.2012.00464.x
Månberger, André; Stenqvist, Björn (1 de agosto de 2018). «Global metal flows in the renewable energy transition: Exploring the effects of substitutes, technological mix and development». Energy Policy (em inglês). 119: 226–241. ISSN0301-4215. doi:10.1016/j.enpol.2018.04.056
Van Zalk, John; Behrens, Paul (1 de dezembro de 2018). «The spatial extent of renewable and non-renewable power generation: A review and meta-analysis of power densities and their application in the U.S.». Energy Policy (em inglês). 123: 83–91. ISSN0301-4215. doi:10.1016/j.enpol.2018.08.023
Arnett, Edward B.; Hein, Cris D.; Schirmacher, Michael R.; Huso, Manuela M. P.; Szewczak, Joseph M. (10 de setembro de 2013). «Correction: Evaluating the Effectiveness of an Ultrasonic Acoustic Deterrent for Reducing Bat Fatalities at Wind Turbines». PLOS ONE. 8 (9). ISSN1932-6203. doi:10.1371/annotation/a81f59cb-0f82-4c84-a743-895acb4b2794
Mikołajczak, J.; Borowski, S.; Marć-Pieńkowska, J.; Odrowąż-Sypniewska, G.; Bernacki, Z.; Siódmiak, J.; Szterk, P. (2013). «Preliminary studies on the reaction of growing geese (Anser anser f. Domestica) to the proximity of wind turbines». Polish Journal of Veterinary Sciences. 16 (4): 679–86. PMID24597302. doi:10.2478/pjvs-2013-0096
Skarin, Anna; Nellemann, Christian; Rönnegård, Lars; Sandström, Per; Lundqvist, Henrik (2015). «Wind farm construction impacts reindeer migration and movement corridors». Landscape Ecology. 30 (8): 1527–40. doi:10.1007/s10980-015-0210-8
Flydal, Kjetil; Eftestøl, Sindre; Reimers, Eigil; Colman, Jonathan E. (2004). «Effects of wind turbines on area use and behaviour of semi-domestic reindeer in enclosures». Rangifer. 24 (2). 55 páginas. doi:10.7557/2.24.2.301mirror
Loss, Scott R.; Will, Tom; Marra, Peter P. (2013). «Estimates of bird collision mortality at wind facilities in the contiguous United States». Biological Conservation. 168: 201–09. doi:10.1016/j.biocon.2013.10.007
Welcker, J.; Liesenjohann, M.; Blew, J.; Nehls, G.; Grünkorn, T. (2017). «Nocturnal migrants do not incur higher collision risk at wind turbines than diurnally active species». Ibis. 159 (2): 366–73. doi:10.1111/ibi.12456
Parisé, J.; Walker, T. R. (2017). «Industrial wind turbine post-construction bird and bat monitoring: A policy framework for Canada». Journal of Environmental Management. 201: 252–259. PMID28672197. doi:10.1016/j.jenvman.2017.06.052
Mikołajczak, J.; Borowski, S.; Marć-Pieńkowska, J.; Odrowąż-Sypniewska, G.; Bernacki, Z.; Siódmiak, J.; Szterk, P. (2013). «Preliminary studies on the reaction of growing geese (Anser anser f. Domestica) to the proximity of wind turbines». Polish Journal of Veterinary Sciences. 16 (4): 679–86. PMID24597302. doi:10.2478/pjvs-2013-0096
Buller, Erin (11 de julho de 2008). «Capturing the wind». Uinta County Herald. Consultado em 4 de dezembro de 2008. Arquivado do original em 31 de julho de 2008"The animals don't care at all. We find cows and antelope napping in the shade of the turbines." – Mike Cadieux, site manager, Wyoming Wind Farm
uit.no
septentrio.uit.no
Flydal, Kjetil; Eftestøl, Sindre; Reimers, Eigil; Colman, Jonathan E. (2004). «Effects of wind turbines on area use and behaviour of semi-domestic reindeer in enclosures». Rangifer. 24 (2). 55 páginas. doi:10.7557/2.24.2.301mirror
Buller, Erin (11 de julho de 2008). «Capturing the wind». Uinta County Herald. Consultado em 4 de dezembro de 2008. Arquivado do original em 31 de julho de 2008"The animals don't care at all. We find cows and antelope napping in the shade of the turbines." – Mike Cadieux, site manager, Wyoming Wind Farm
Månberger, André; Stenqvist, Björn (1 de agosto de 2018). «Global metal flows in the renewable energy transition: Exploring the effects of substitutes, technological mix and development». Energy Policy (em inglês). 119: 226–241. ISSN0301-4215. doi:10.1016/j.enpol.2018.04.056
Van Zalk, John; Behrens, Paul (1 de dezembro de 2018). «The spatial extent of renewable and non-renewable power generation: A review and meta-analysis of power densities and their application in the U.S.». Energy Policy (em inglês). 123: 83–91. ISSN0301-4215. doi:10.1016/j.enpol.2018.08.023
Arnett, Edward B.; Hein, Cris D.; Schirmacher, Michael R.; Huso, Manuela M. P.; Szewczak, Joseph M. (10 de setembro de 2013). «Correction: Evaluating the Effectiveness of an Ultrasonic Acoustic Deterrent for Reducing Bat Fatalities at Wind Turbines». PLOS ONE. 8 (9). ISSN1932-6203. doi:10.1371/annotation/a81f59cb-0f82-4c84-a743-895acb4b2794