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ORIGINAL PAPER
The operation of building integrated wind turbines in different weather conditions on the example of the AGH Center of Energy
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1
AGH Akademia Górniczo-Hutnicza, Wydział Energetyki i Paliw, Katedra Zrównoważonego Rozwoju Energetycznego, Kraków
 
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Instytut Gospodarki Surowcami Mineralnymi i Energią PAN, Kraków
 
 
Zeszyty Naukowe Instytutu Gospodarki Surowcami Mineralnymi i Energią Polskiej Akademii Nauk 2018;102:101-110
 
 
REFERENCES (8)
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Bobrova, D. 2015. Building-Integrated Wind Turbines in the Aspect of Architectural Shaping. Procedia Engineering 117, s. 404–410.
 
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Cho i in. 2011 – Cho, K.P., Jeong, S.H., Sari, D.P. 2011. Harvesting wind energy from aerodynamic design for building integrated wind turbines. International Journal of Technology 3, s. 189–198.
 
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Denoon i in. 2008 – Denoon, R., Cochran, B., Banks, D., Wood, G. 2008. Harvesting Wind Power from Tall Buildings. CTBUH 2008, 8th World Congress – Tall and Green: Typology for a Sustainable Urban Future, Congress Proceedings.
 
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Haase, M. i Lofstrom, E. 2015. Building augmented wind turbines – BAWT: integrated solutions and technologies of small wind turbines. Wyd. 1. Oslo. SINTEF Academic Press.
 
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Perez-Lombard i in. 2008 – Perez-Lombard L., Ortiz J., Pout C. 2008. A review on buildings energy consumption information. Energy and Buildings 40, s. 394–398.
 
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Ragheb M., 2012. Wind turbines in the urban environment. [Online] Dostępne w: https://www.energybc.ca/ [Dostęp: 17.01.2018].
 
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Sunderland K. i in. 2013 – Sunderland, K., Woolmington, T., Conlon, M., Blackledge, J. 2013. Small wind turbines in turbulent (urban) environments: A consideration of normal and Weibull distributions for power prediction. Journal of Wind Engineering and Industrial Aerodynamics 121, s. 70–81
 
ISSN:2080-0819
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