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Sustainable development in the province of Cordoba

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Warianty tytułu
EN
Zrównoważony rozwój prowincji Kordoba
Języki publikacji
PL
Abstrakty
PL
Kordoba jest prowincją południowej Hiszpanii, w północno-środkowej części wspólnoty autonomicznej Andaluzji. W artykule przeanalizowano ilość energii, która będzie niezbędna do zainstalowania na pokrycie zużycia energii elektrycznej ludności Kordoby. Zastosowano metodę wielokryterialnego wyboru nowych i odnawialnych technologii energetycznych w oparciu o analizę i syntezę parametrów metodą niedoboru informacji.
EN
Cordoba is an inland province of southern Spain, in the north-central part of the autonomous community of Andalusia. This paper presents the quantity of power that will be necessary to install for covering the electrical consumption of Cordoba’s population. Multicriteria has been the followed method with selection of criteria and options for the new and renewable energy technologies assessment based on the analysis and synthesis of parameters under the information deficiency method.
Rocznik
Strony
48--53
Opis fizyczny
Bibliogr. 30 poz., rys., tab.
Twórcy
  • University of Córdoba, Area of Electronics, Campus de Rabanales, Leonardo da Vinci building. E-14071 Córdoba, Spain, p32rogia@uco.es
Bibliografia
  • [1] International Energy Agency. World Energy Outlook 2004. Available at: www.iea.org/textbase/nppdf/free/2004/weo2004.pdf (accessed 17.12.2008)
  • [2] Madlener, R., Stagl, S., “Sustainability-guided promotion of renewable electricity generation,” Ecological Economics 53 (2005) 147-167.
  • [3] IAEA. Energy indicators for sustainable development: guidelines and methodologies. Vienna: IAEA; 2005.
  • [4] Moreno-Muñoz, A., De-la-Rosa, J.J.G., Posadillo, R., Pallarés, V., “Short term forecasting of solar radiation,” (2008) 33PVSC. 33 IEEE. Photovoltaic Specialists Conference. San Diego, CA May 11–16, 2008.
  • [5] Míguez, J. L., et al., “Review of compliance with EU-2010 targets on renewable energy in Galicia (Spain),” Renewable and Sustainable Energy Reviews 10 (2006) 225-247.
  • [6] del Río, P., Burguillo, M., “Assessing the impact of renewable energy deployment on local sustainability: Towards a theoretical framework,” Renewable and Sustainable Energy Reviews 12 (2008) 1325-1344.
  • [7] Moreno-Muñoz, A. Power quality. Mitigation Technologies in a distributed environment. 1st edition. London. Springer. 2007.
  • [8] Domínguez Bravo, J., et al. ”GIS approach to the definition of capacity and generation ceilings of renewable energy technologies”. Energy Policy 35 (2007) 4879-4892.
  • [9] Gul, T., Stenzel, T. ”Variability of wind power and other renewables: Management options and strategies”. Report by the International Energy Agency. (2005)
  • [10] Chaitusaney, S., Yokoyama, A. ”Maximum distributed generation with voltage regulation under uncertainty of renewable energy resources”. IEEJ Trans. on Power and Energy, 127 (2007), No 1, 113-120.
  • [11] Keirstead, J. Towards Urban Energy System Indicators. Imperial College London. 24 July 2007.
  • [12] Phdungsilp, A. Energy Analysis for Sustainable Mega-Cities. Licentiate Thesis. School of Industrial Engineering and Management Department of Energy Technology. Royal Institute of Technology. Stockholm, Sweden 2006.
  • [13] Montmollin, A., Altwegg, D. Sustainable Development in Switzerland. Factors for an indicator system. Neuchâtel, 2000.
  • [14] Tsai, W. T., Chou, Y. H. ”Overview of environmental impacts, prospects and policies for renewable energy in Taiwan”. Renewable and Sustainable Energy Reviews. 9 (2005) 119– 147.
  • [15] Pohekar, S. D., Ramachandran, M. ”Application of multi-criteria decision making to sustainable energy planning—A review”. Renewable and Sustainable Energy Reviews 8 (2004) 365- 381.
  • [16] Streimikiene, D, et al. ”Energy indicators for sustainable development in Baltic States”. Renewable and Sustainable Energy Reviews 11 (2007) 877-893.
  • [17] Jovanovic, M, et al. ”Sustainable development of the Belgrade energy system”. Energy (2008), doi:10.1016/j.energy.2008.01.013.
  • [18] Afgan, N. H., Carvalho, M. G. ”Multi-criteria assessment of new and renewable energy power plants”. Energy 27 (2002) 739– 755
  • [19] Haralambopoulos, D. A., Polatidis, H. ”Renewable energy projects: structuring a multicriterio group decision-making framework”. Renewable Energy 28 (2003) 961–973.
  • [20] Beccali, M. et al. ”Decision-making in energy planning. Application of the Electre method at regional level for the diffusion of renewable energy technology”. Renewable Energy 28 (2003) 2063–2087.
  • [21] Plan de Energías Renovables en España (PER) 2005-2010. Available at: www.mityc.es/Desarrollo/Seccion/EnergiaRenovable/Plan/Doc umentos/ (accessed 17.12.2008)
  • [22] Consejería de Empleoy Desarrollo Tecnológico 2003, p.73
  • [23]Available at: www.agenciaandaluzadelaenergia.es/agenciadelaenergia/nav/ noticias/listadoNoticias.jsp?type=noticias&orderBy=fecha_orde nacion_cod&orderType=2&orderAsc=si (accessed 17.12.2008)
  • [24] Organismo Internacional de la Energía Atómica. Colección de manuales de informática Nº18/S, Modelo para el Análisis de la Demanda de Energía (MAED-2). Viena, 2007.
  • [25] Gil-de-Castro, A; Moreno-Muñoz, A; Lopez-Rodriguez, M.A.; de la Rosa, J.J.G. ”Energy supply for sustainable regional development in Cordoba” (2010) 9th Int. Conf. On Environment and Electrical Engineering, 6-9.
  • [26] Rogers, M; Bruen, M; Maystre, L-Y. Electre and decision support. Methods and Applications in Engineering and Infrastructure Investment. Kluwer Academic Publishers. 2000. ISBN 0-7923-8647-7
  • [27] Elliasson B. Energy and global changes. ABB Corporate Research, 1998
  • [28] Werko-Brobby ChY, Hagen EB. Biomass conversion and technology. Chichester, UK: John Wiley & Sons, 1996
  • [29] Markavart TT. Solar electricity. Chichester, UK: John Wiley & Sons, 1994
  • [30] Barry, M.-L., Steyn, H., Brent, A. Determining the most important factors for sustainable energy technology selection in Africa: Application of the focus group technique. 2008 PICMET: Portland International Center for Management of Engineering and Technology, Proceedings, art. no. 4599622, pp. 181-187
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOB-0042-0010
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