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Numerical modeling of vertical axis wind turbine with air guides

U., Piaskowska-Silarska M., Gumuła S., Farmaha I., (2019). Application of evolutionary algorithms to analysis the possibilities of wind energy use. W: ICCC 2019. Kraków – Wieliczka, May 26-29, 2019 e-ISBN: 978-1-7281-0701-1. pp. 1-7. Rahman M., Salyers T.E., El-Shahat A., Ilie M., Ahmed M., Soloiu V. (2018). Numerical and Experimental Investigation of Aerodynamic Performance of Vertical-Axis Wind Turbine Models with Various Blade Designs. Journal of Power and Energy Engineering, 6, 26-63. Kacprzak K., Sobczak K. (2013). Numeryczna analiza przepływu

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Green energy from a hybrid PV panels and wind turbine farm in Lebanon

REFERENCES CanWEA, (2010), Available at: [Accessed 11 sept. 2017]. Fthenakis, V. and Alsema, E. (2006), Photovoltaics energy payback times, greenhouse gas emissions and external costs: 2004-early 2005 status, Progress in Photovoltaics, 14, pp. 275-280. Gumula, S. Hudy, W. Piaskowska-Silarska, M. Pytel, K. (2015). The effect of greenhouse gases and natural factors on the changes in Earth temperature. Przemysł Chemiczny, 94 (9), pp. 1515-1517. Lenntech Water treatment & purification Holding B

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Public reactions towards wind energy instalments. Case study: Romania and the Netherlands

References Abe, K., Saito, T., Taguchi, M., Mishima, N. (2016), “A Study on Reaction of Residents to Wind Turbines to Promote Local Economy”, Procedia CIRP , Vol. 40, pp. 463-468. Berndt, M. L. (2015), “Influence of concrete mix design on CO2 emissions for large wind turbine foundations”, Renewable Energy, Vol. 83, pp. 608–614. Blyth, D. (2015), “Protests against giant wind turbines in Dutch-Flemish border area”, Flanderstoday, available at:

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The importance of on-site evaluation for placing renewable energy in the landscape: A case study of the Búrfell wind farm (Iceland)

References: APPLEYARD, D. (1970): Styles and methods of structuring a city. Environment and Behaviour, 2: 100–117. BAXTER, J., MORZARIA, R., HIRSCH, R. (2013): A case-control study of support/opposition to wind turbines: Perceptions of health risk, economic benefits, and community conflict. Energy Policy, 61: 931–943. BELL, S. (2012). Landscape: pattern, perception and process. New York, Routledge. BELL, D., GRAY, T., HAGGETT, C. (2005): The ‘social gap’ in wind farm siting decisions: explanations and policy responses. Environmental

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Wind farms and rural tourism: A Portuguese case study of residents’ and visitors’ perceptions and attitudes

Geography, 4(2): 169–184. BROEKEL, T., ALFKEN, C. (2015): Gone with the wind? The impact of wind turbines on tourism demand. Energy Policy, 86: 506–519. CLARKE, S. (2009): Balancing environmental and cultural impact against the strategic need for wind power. International Journal of Heritage Studies, 15(2–3): 175–191. COWELL, R. (2010): Wind power, landscape and strategic, spatial planning – The construction of ‘acceptable locations’ in Wales. Land Use Policy, 27(2): 222–232. DAUGSTAD, K. (2008): Negotiating landscape in rural tourism. Annals of

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Ecological Efficiency Assessment Model for Environmental Safety Management of Wind Power Plant

REFERENCES Alberts, H., 2009. Recycling of wind turbine rotor blades – fact or fiction? Dewi Magazin, 34(2), 32-41. Andersson, K., Eide, M.H., Lundquist, U., Mattsson, B., 1998. The feasibility of including sustainability in LCA for product development . Journal of Cleaner Production, 6(3-4), 289-298, DOI:10.1016/S0959-6526(98)00028-6 Berg, S., 1997. Some aspects of LCA in the analysis of forestry operations , Journal of Cleaner Production. 5(3), 211-217, DOI: 10.1016/S0959-6526(97)00040-1 Bovea, M., Powell, J., 2006. Alternative

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The Impact of the Wind Speed on the Dynamics of the Wind Energy System

harmonics reduction using current source inverter with a controlled PWM rectifier , in Proc. EPE., Graz, Austria, Sep. 2001, CD-ROM. [5] Monsson Alma, Constanta, Wind Turbine Systems and Electrical Machines Catalog , 2015. [6] Deliu F., Transitory phenomenons into naval electrical equipment hybrid powered , Ph.D. Thesis, POLITEHNICA Timişoara, 2011.

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“Absorption” or “Carrying Capacity” of Areas – Assessment Methods on the Example of Detached Housing Real Estate

Larger Urban Zone (Poland) , Sustainability, vol. 10(4), 1083. K azak J., van H oof J., S zewrański S z ., 2017, Challenges in the wind turbines location process in Central Europe – The use of spatial decision support systems , Renewable and Sustainable Energy Reviews, vol. 76, pp. 425-433. K azak J., S zewrański S z ., D ecewicz P., 2014, Holistic Assessment of Spatial Policies for Sustainable Management: Case Study of Wroclaw Larger Urban Zone (Poland) , In: Lee D., Dias E., Scholten H. (eds) Geodesign by Integrating Design and Geospatial

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The Impact of Wind Farms on the Prices of Nearby Houses in Poland: A Review and Synthesis

., 2010, Zaawansowane metody analizy statystycznej rynku nieruchomości (Advanced statistical analysis for real etstate market research), Studia i Materiały Towarzystwa Naukowego Nieruchomości, No. 18(1), pp. 7-20. Directive 2009/28/EC of the European Parliament and of The Council of 23 April 2009 on the promotion of the use of energy from renewable sources and amending and subsequently repealing Directives 2001/77/EC and 2003/30/EC. Dröes M.J., Koster H.R.A., 2014, Renewable Energy and Negative Externalities: the Effect of Wind Turbines

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Local benefits factored in utility scale wind energy for a remote location

REFERENCES Burton, T. (2011). Wind Energy Handbook. John Wiley and Sons Ltd. Letcher, T.M. (2017). Wind Energy Engineering. Elsevier Science Publishing Co Inc. Gipe, P. (2016). Wind Energy for the Rest of Us: A Comprehensive Guide to Wind Power and How to Use It. . Gumula, S. Hudy, W. Piaskowska-Silarska, M. and Pytel, K. (2015). The effect of greenhouse gases and natural factors on the changes in Earth temperature. Przemysł Chemiczny, 94 (9), pp. 1515-1517. Fthenakis, V. and Alsema, E. (2006), Photovoltaics energy

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