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Do we have a chance for small-scale energy generation? The examples of technologies and devices for distributed energy systems in micro & small scale in Poland

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Języki publikacji
EN
Abstrakty
EN
This paper presents examples of technologies for distributed energy generation developed under the projects coordinated by the IFFM PAS in Gdańsk. These are CHP units (generating heat and electricity) for houses with a power from several to tens of kW and for municipalities in the form of the Municipal Energy Centers (with a capacity of several hundred kW up to several MW). A unique project, specializing in “energy-plus” technologies for residential houses and other buildings, which aims to build a Research Centre of PAS in Jabłonna is also presented,. These are key technologies for energy sector with respect to distributed generation. Additionally, the article discusses the conditions and opportunities for the development of energy generation or more broadly: civic energy generation in our country. Civic energy generation is a great vision in which the citizen becomes an entity and do not subject to the energy market, and additionally has its virtual advisor in the form of smart grid and data processing technologies in a “digital cloud”.
Rocznik
Strony
749--756
Opis fizyczny
Bibliogr. 15 poz., fot., rys., il.
Twórcy
autor
  • Institute of Fluid-Flow Machinery, Polish Academy of Sciences, 14 Fiszera St., 80-952 Gdańsk, Poland
Bibliografia
  • [1] F.F. Yanine and E.E. Sauma, “Review of grid-tie microgeneration systems without energy storage: towards a new approach to sustainable hybrid energy systems linked to energey efficiency”, Renewable and Sustainable Energy Reviews 26, 60-95 (2013).
  • [2] A. Kaygusuz, C. Keles, B.B. Alagoz, and A. Karabiber, “Renewable energy integration to smart cities”, Energy and Buildings 64, 456-462 (2013).
  • [3] D.S. Markovic, D. Zivkovic, I. Branovic, R. Popovic, and D. Cvetkovic, “Smart power grid and cloud computing”, Renewable and sustainable Energy Reviews 24, 566-577 (2013).
  • [4] B. Sliz-Szkliniarz, “Assessment of renewable energy-mix and land use trade-off at regional level: a case study for the Kujawsko-Pomorskie Voivodsip”, Land Use Policy 35, 257-270 (2013).
  • [5] R. Scleicher-Tappeser, “How renewables will change electricity market in next five years”, Energy Policy 48, 64-75 (2013).
  • [6] K. Żmijewski, Renew Renewables, available http://krzysztofzmijewski.natemat.pl/61835,odnowienie-odnawialnych (03.07.2013), (in Polish).
  • [7] K. Żmijewski, Grid Intelligence, available http://krzysztofzmijewski.natemat.pl/61517,inteligencja-sieci (03.07.2013), (in Polish).
  • [8] K. Żmijewski, Low Emissive Economy - Chance or Repression, available http://krzysztofzmijewski.natemat.pl/58195,gospodarka-niskoemisyjna-szansa-czy-represja (03.07.2013), (in Polish).
  • [9] K. Żmijewski, Is Energy Revolution Planned?, available http://energetyka.wnp.pl/prof-krzysztof-zmijewski-szykuje-sieenergetyczna-rewolucja,150732100.html (03.07.2013), (in Polish).
  • [10] J. Popczyk, “Innovative power engineering; ecological, energy and economic-civilizing contexts”, Acta Energetica 3 (5), 6-23 (2009), (in Polish).
  • [11] J. Popczyk, It Is Necessary to Be Ready for Passing, available http://www.wnp.pl/artykuly/jan-popczyk-trzeba-byc-gotowym-na-przemijanie,6045.html (03.07.2013]), (in Polish).
  • [12] J. Kiciński and G. Zywica, “Numerical analysis of defects in the rotor supporting structure, advances in vibration engineering”, Advances in Vibration Engineering 11 (4), 297-304 (2012).
  • [13] J. Kiciński and G. Zywica, “The numerical analysis of the steam microturbine rotor supported on foil beanigs”, Advances in Vibration Engineering 11 (4), 113-120 (2012).
  • [14] J. Kiciński, “Computational model and strenght analysis of the steam microturbine with fluid-film bearnings”, Proc. Int. Conf. Vibration Engineering and Technology of Machinery VETOMAC-VIII VM 2012-10005, 333-342 (2012).
  • [15] J. Kiciński, “New method of state analysis and diagnostics of power micro-devices”, Scietific Problems of Machines Operation and Maintenance 1 (165), 57-69 (2011).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0c555bf0-bf7b-4ce4-9e5e-4409865c5089
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