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The paper presents results obtained from calculations conducted to receive information on the capability of photovoltaic systems to power electric vehicles in regular use. The annual distance travelled was divided in nine categories. Every aspect of this analysis was suitable for Polish market and parameters given by the climate that is connected with geographical location of Poland. It is worth mentioning that one of the key elements is the law for renewable energy, that is the key aspect to economical benefits that come from so called green investments. Energy law was also taken into account during this simulation. All those aspects together summarized to a conclusions that Polish market is not as competitive as other European markets when electric propulsion is present in the system.
Czasopismo
Rocznik
Tom
Strony
55--62
Opis fizyczny
Bibliogr. 20 poz., 1 mapa kolor., wykr.
Twórcy
autor
- Institute of Thermal Technology, Silesian University of Technology
autor
- Institute of Thermal Technology, Silesian University of Technology
autor
- Institute of Thermal Technology, Silesian University of Technology
Bibliografia
- [1] Friesa M, Kerlera M, Rohra S. et al. An overview of costs for vehicle components, fuels, greenhouse gas emissions and total cost of ownership update 2017. https://steps.ucdavis.edu/wp-content/uploads/2018/02/FRIES-MICHAEL-An-Overview-of-Costs-for-Vehicle-Components-Fuels-Greenhouse-Gas-Emissions-and-Total-Cost-of-Ownership-Update-2017-.pdf
- [2] Szymanski P, Ciuffo B, Fontaras G, Martini G, Pekar F. The future of road transport in Europe. Environmental implications of automated, connected and low-carbon mobility. Combustion Engines. 2021;186(3):3-10. https://doi.org/10.19206/CE-141605
- [3] Gis M, Bednarski M, Lasocki J. Determination of pollutant emission of electric vehicle in real traffic conditions in Poland. Combustion Engines. 2019;178(3):9-14. https://doi.org/10.19206/CE-2019-302
- [4] Samar Vehicle Market Research Institution. https://www.samar.pl/__/3/3.a/111495/3.sc/11/Ponad-22-tys--wtyczkowozów---stan-parku-na-koniec-lutego-2021-roku.html?locale=pl_PL
- [5] Kapustin NO, Grushevenko DA. Long-term electric vehicles outlook and their potential impact on electric grid. Energ Policy. 2020;(137):111103. https://doi.org/10.1016/j.enpol.2019.111103
- [6] Statistics Poland „Tourism in 2019”. Rzeszów, Warszawa 2020.
- [7] PlugShare. https://www.plugshare.com
- [8] Google maps. https://www.google.pl/maps
- [9] Mercedes-Benz Group Media. https://www.media.daimler.pl/problemy-z-adowaniem-stereotypy-i-rzeczywistosc/ (accessed on 23.03.2021)
- [10] Dujic D. Electric vehicles charging - an ultrafast overview. International Exhibition and Conference for Power Electronics, Intelligent Motion, Renewable Energy and Energy Management. Shanghai 2019. https://infoscience.epfl.ch/record/267807
- [11] PKN Orlen Poland Price list for EV charging https://orlencharge.pl/#oferta (accessed on 23.03.2021)
- [12] Guziński J, Adamowicz M, Kamiński J. Infrastruktura ładowania pojazdów elektrycznych. Automatyka, Elektryka, Zakłócenia. 2014;1(15):74-83.
- [13] Polish Ministry of Investment and Development. https://archiwum.miir.gov.pl/strony/zadania/budownictwo/charakterystyka-energetyczna-budynkow/dane-do-obliczen-energetycznych-budynkow-1 (accessed on 09.04.2021)
- [14] Śmierzchalska P, Chmielowiec M. Mapa usłonecznienia w Polsce. Pomerian Academy in Slupsk. Slupsk 2015. https://kierunkizamawiane.apsl.edu.pl/pliki/czystaenergia/raport4_II.pdf
- [15] Gil P. Roczne wyniki pomiaru sprawności amorficznych kolektorów fotowoltaicznych w Rzeszowie. Rynek Energii. 2015;(4):75-83.
- [16] Würfel P. Thermodynamic limitations to solar energy conversion. Physica E. 2002;14(1-2):18-26. https://doi.org/10.1016/S1386-9477(02)00355-7
- [17] Soleco Polska. https://www.kolektory.com/instalacje-fotowoltaiczne-ceny/instalacje-fotowoltaiczneceny/zestaw-o-mocy-10-kw.html (accessed on 12.04.2021)
- [18] Statistics Poland. Energy consumption in households in 2018, Warsaw 2019.
- [19] Fotowoltaika. https://fotowoltaikaonline.pl/kalkulator
- [20] Ustawa z dnia 20 lutego 2015 r. o odnawialnych źródłach energii. Dz.U. 2015, poz. 478, rozdz. 2, art. 4, ust. 2, Chancellery of the Sejm, 2015.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0494aee9-eb26-445b-9a0f-bfc98e28d411