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Social and economic development of the country to a large extent is determined by the energy sector. Structure of electricity production in Poland shows a significant share of fossil fuels. According to the Energy Market Information Centre coal is particularly important to ensure sufficient energy supply in Poland. Its participation in the national production comprises nearly 50%. Another important energy source is lignite, which accounts for more than 34% of electricity production. Unfortunately, the energy system based mainly on limited fuel resources requires the search for new energy sources. This situation makes the use of water energy an interesting solution. Low hydropower potential in Poland, as well as economic and formal –legal aspects causesthat mentioned potential is used only in 12%, which is 1,5% of national electricity production. Both the low utilization of energy water potential of the country, as well as the benefits from the development of hydropower indicate the need to take actions aimed at hydropower development, one of them are focused on modernization and renovation of existing facilities. Because of the lowland character of the country, the pumped –storage power plants are the most important in electricity production. To ensure their stable share in national energy sector it is important to control current state of both power plants and its associated facilities, such as dam. To this aim, there were created many statistical methods focused on displacements of the dam during the normal operation of the object. Previous analysis allowed for the conclusion, that the EDF model reflects measurement data obtained from the body of the dam, the most faithfully. This assumption allowed for forecasting of future displacements of mentioned measurement points. The main assumption of presented modeling was to create simple tool to support the monitoring of the object and ensure its safety operation
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p.519-529,fig.,ref.
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- University of Science and Technology - AGH, 30 Aleja Mickiewicza Str., 30-059 Krakow, Poland
Bibliografia
- [1] T. Leszczyński, Hydroenergetyka w Unii Europejskiej, Biuletym Urzędu Regulacji Energetyki 6 (2009).
- [2] G. Kalda, Analiza stanu energetyki wodnej w Polsce, Journal of Civil Engineering, Environment and Architecture XXXI(61) (4/14) (2014) 81-92.
- [3] K. Fiedler, Awarie i katastrofy zapór – zagrożenia, ich przyczyny i skutki oraz działania zapobiegawcze. IMGW (2007).
- [4] P. Mazenot, Méthode generale d’interpretation des mesure de surveillance des barrages en exploitation à Electricité de France, Archiwum Hydrotechniki (1974) 429-451
- [5] Bąk Analiza przydatności modelu EDF dla celów monitoringu odkształceń elementów zapory Solina. IV Ogólnopolska Konferencja Młodych Naukowców „Nauka dla Środowiska Przyrodniczego”, Poznań (2015)
- [6] Instytut Meteorologii i Gospodarki Wodnej. Zapora Solina, wyznaczenie przemieszczeń. Warszawa (2011)
- [7] S. Bonelli, P. Royet, Delayed response analysis of dam monitoring data. ICOLD European Symposium on Dams in a European Context, GEIRANGER, (2001).
- [8] M. Kaniecki, Rozwój energetyki wodnej na świecie i w Polsce, Materiały szkoleniowe, Instytut Maszyn Przepływowych PAN, Gdańsk 2005.
- [9] S. Bonelli, R. Tourment, H. Felix, Analysis of earthdam monitoring data. Selected problems of water engineering, Kraków, (2003) 133-150.
- [10] L. Chouinard, R. Larivière, P. Côté, W. Zhao, Analysis of Irreversible displacements in multiple arch concrete dam using principal component analysis. Joint International Conference on Computing and Decision Making in Civil and Building Engineering, Montréal, Canada (2006).
- [11] M. Majewski, The development of hydro power in Poland. The most important hydro engineering facilities. Acta Energetica 3(16) (2013) 45-53
Uwagi
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1st INTERNATIONAL SCIENTIFIC CONFERENCE, dilemmas of scientific research in various fields of science: natural sciences, science and technology, economic and social sciences, humanistic sciences, 10th October, 2016, Cracow, Poland
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