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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)

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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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On the spatial differentiation of energy transitions: Exploring determinants of uneven wind energy developments in the Czech Republic

–37. FERGUSON-MARTIN, C. J., HILL, S. D. (2011): Accounting for variation in wind deployment between Canadian provinces. Energy Policy, 39(3): 1647–1658. FIRESTONE, J., BATES, A., KNAPP, L. A. (2015): See me, Feel me, Touch me, Heal me: Wind turbines, culture, landscapes, and sound impressions. Land Use Policy, 46: 241–249. FOURNIS, Y., FORTIN, M. J. (2017): From social ‘acceptance’ to social ‘acceptability’ of wind energy projects: towards a territorial perspective. Journal of environmental planning and management, 60(1): 1–21. FRANTÁL, B. (2016): Living on

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New Trends and Challenges for Energy Geographies: Introduction to The Special Issue

challenges facing global energy governance. Energy Policy, Vol. 37, No. 12, p. 5239–5248. FRANTÁL, B. (2014): Have local government and publicexpectations of wind energy project benefits beenmet? Implications for repowering schemes. Journal of Environmental Policy & Planning. DOI:10.1080/1523908X.2014.936583. FRANTÁL, B., KUČERA, P (2009): Impacts of the operation of wind turbines as perceived by residents in concerned areas. Moravian Geographical Reports, Vol. 17, No. 2, p. 34–45. FRANTÁL, B., MARTINÁT, S., HALFACREE, K., WALKER, G., WOLSINK, M., VAN DER HORST, D

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Distance matters. Assessing socioeconomic impacts of the Dukovany nuclear power plant in the Czech Republic: Local perceptions and statistical evidence

of acceptance of nuclear power stations: investigating an explanatory model. Energy Policy, 39(6): 3621–3629. VISSCHERS, V. H., SIEGRIST, M. (2012): Fair play in energy policy decisions: Procedural fairness, outcome fairness and acceptance of the decision to rebuild nuclear power plants. Energy Policy, 46: 292–300. WALKER, C., BAXTER, J., OUELLETTE, D. (2014): Beyond rhetoric to understanding determinants of wind turbine support and conflict in two Ontario, Canada communities. Environment and Planning A, 46(3): 730–745. WARREN, C. R., LUMSDEN, C

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A Curse of Coal? Exploring Unintended Regional Consequences of Coal Energy in The Czech Republic

and environments in Australia. Impact Assessment and Project Appraisal, Vol. 28, No. 4, p. 299–312. FRANTÁL, B., KUNC, J. (2011): Wind turbines in tourism landscapes: Czech experience. Annals of Tourism Research, Vol. 38, No. 2, p. 499–519. FREESE, B. (2003): Coal: A Human History. Cambridge: Basic Books, 320 pp. FREUDENBURG, W. R. (1992): Addictive Economies: Extractive Industries and Vulnerable Localities in a Changing World Ekonomy 1. Rural Sociology, Vol. 57, No. 3, p. 305–332. FREUDENBURG, W. R., GRAMLING, R. (1998): Linked to what? Economic linkages in

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Small-Scale Renewable Energy Systems in the Development of Distributed Generation in Poland

.03.2014]. Available at: http://www.naruc. org/international/Documents/NARUC%20-%20RES%20 Handbook %20-%20FINAL%20FULL%20VERSION%20 03%2004% 2011rev%20again.pdf. Energetyka rozproszona 2011. Warszawa, Instytut na rzecz Ekorozwoju, Instytut Energii Odnawialnej. Energy Regulatory Office (2013): Energy Regulatory Office website [online] [cit. 31.07.2013] Available at: www.ure. FRANTÁL, B. KUNC, J. (2011): Wind turbines in tourism landscapes: Czech experience. Annals of Tourism Research, Vol. 38, No. 2, p. 499–519. GORDIJN, J., AKKERMANS, H. (2007): Business models for

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The Impact of Infrasounds Generated by Wind Power Stations on a Human Being

poziomów hałasu w środowisku. Dz.U. Nr.120.2007. Rozporządzenie Ministra Środowiska w sprawie dopuszczalnych poziomów hałasu w środowisku. Hepburn, H., Edworthy, J. (2005). Observations from Castle River Wind Farm. Canadian Wind Energy Conference . Toronto. ISO 7196:1995. Acoustics- Frecuency- weighting charakterystic for infrasound measurements. Jakobsen, J. (2005). Infrasound Emission from Wind Turbines. Journal of low frequency noise, vibration and active control, 24 (3), 45-55. Kaczmarska, A., Augustyńska, D. (2007). Hałas

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Ways of Ensuring Society’s Environmental Stability

-111). Zinko, R., Kruts, T., & Lozovyi, I. (2009). Performance modelling of slowspeed wind wheel of energy unit with blades of constant profile by its radius. Computing, 8(3), 78-82. Kuzio, I., & Zinko, R. (2012). Performance modelling of windmills with blades of sail type. (pp. 100-110). Poltava. Zinko, R. (2012). Using graphs while studying performance of autonomous slow-speed wind power unit. (pp. 31-36). Khmelnytskyi. Korendii, V. (2012). Analysis of benefits and disadvantages of horizontally axial wind turbines. No. 729

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Renewable Energy Sources in the Lubusz Voivodship (Poland). The Present Conditions and Perspectives for Development

. Kazak J., van Hoof J., Szewranski S.: Challenges in the wind turbines location process in Central Europe – The use of spatial decision support systems. Renewable and Sustainable Energy Reviews 76 (2017) 425-433. 18. Kuczyński T. i inni: Innowacyjność podejmowanych działań w obszarze odnawialnych źródeł energii , Zielona Góra 2008. 19. Krajowy Plan Działań w zakresie energii ze źródeł odnawialnych , Ministerstwo Środowiska, 2010. 20. Określenie potencjału energetycznego regionów Polski w zakresie odnawialnych źródeł energii , pod red. G

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