Tytuł artykułu
Treść / Zawartość
Pełne teksty:
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In the paper the Baltic Electric Cable Critical Infrastructure Network (BECCIN) is defined and the main electric cable investments in the Baltic Sea Region, that are components of BECCIN, are described. Next the installations belonging to BECCIN are presented regarding their availability and disturbance outages. Functioning and disturbances in electric grid critical infrastructure network are analyzed in terms of climate-weather change impact. Finally, consequences of power blackouts and their impact on other critical infrastructures are discussed.
Rocznik
Tom
Strony
29--36
Opis fizyczny
Bibliogr. 22 poz., rys., wykr.
Twórcy
autor
- Maritime University, Gdynia, Poland
autor
- Maritime University, Gdynia, Poland
autor
- Maritime University, Gdynia, Poland
Bibliografia
- [1] Blokus-Roszkowska, A., Bogalecka M., Dziula, P. et al. (2016). Gas Pipelines Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 1-6.
- [2] Blokus-Roszkowska, A., Bogalecka, M. & Kołowrocki, K. (2016). Critical Infrastructure networks at Baltic Sea and its seaside. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 7-14.
- [3] Blokus-Roszkowska, A., Guze, S., Kołowrocki, K. et al. (2016). Port Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 15-28.
- [4] Bogalecka, M., Kołowrocki, K., SoszyńskaBudny J. et al. (2016). Shipping Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 1-2, 43-52.
- [5] Bruch, M., Münch, V., Aichinger, M. et al. (2011). Power Blackout Risks, Risk Management Options.
- [6] Davis, M. & Clemmer, S. (2014). Power Failure. How Climate Change Puts Our Electricity at Risk - and What We Can Do. Union of Concerned Scientists [available at: www.ucsusa.org/ powerfailure; last accessed: 13.01.2016].
- [7] Drzazga, M., Kołowrocki, K. & Soszyńska-Budny, J. (2016). Oil Pipeline Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 53-60.
- [8] ENTSO-E. (2015). Nordic HVDC Utilisation and Unavailability Statistics 2014, Brussels, Belgium.
- [9] ENTSO-E. (2015). Regional Investment Plan 2015 Baltic Sea region, Brussels, Belgium.
- [10] ENTSO-E. The ENTSO-E Interconnected System Grid Map [available at: https://www.entsoe.eu/ publications/order-maps-and-publications/ electronic-grid-maps/Pages/default.aspx; last accessed: 13.01.2016].
- [11] ENTSO-E. Who Is ENTSO-E? [available at: https://www.entsoe.eu/about-entso-e/Pages/ default.aspx; last accessed: 13.01.2016].
- [12] EU-CIRCLE Report D1.1-GMU1. (2015). EUCIRCLE Taxonomy.
- [13] EU-CIRCLE Report D1.2-GMU1. (2016). Identification of existing critical infrastructures at the Baltic Sea area and its seaside, their scopes, parameters and accidents in terms of climate change impacts.
- [14] EU-CIRCLE Report D1.4-GMU3. (2016). Holistic approach to analysis and identification of critical infrastructures within the Baltic Sea area and its surroundings – Formulating the concept of a global network of critical infrastructures in this region (“network of networks” approach).
- [15] European Commission. (2015). Infrastructure. Connecting energy markets and regions [available at: https://ec.europa.eu/energy/en/ topics/infrastructure; last accessed: 13.01.2016].
- [16] European Commission. (2015). New electricity connections between Lithuania, Poland and Sweden create "Baltic Ring". [available at: https://ec.europa.eu/energy/en/news/newelectricity-connections-between-lithuania-polandand-sweden-create-baltic-ring; last accessed: 13.01.2016].
- [17] European Union. (2011). Energy infrastructure. Priorities for 2020 and beyond – A Blueprint for an integrated European energy network. Luxembourg: Publications Office of the European Union.
- [18] Guze, S. & Ledóchowski, M. (2016). Ship Traffic and Port Operation Information Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 65-72.
- [19] Kołowrocki, K., Kuligowska, E. & Reszko, M. (2016). Methodology for wind farms critical infrastructure network safety and resilience to climate change analysis. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 179-186.
- [20] Mideksa, T. K. & Kallbekken, S. (2010). The impact of climate change on the electricity market: A review, Energy Policy 38, 3579–3585.
- [21] Pursiainen, Ch. (2007). Towards a Baltic Sea Region Strategy in Critical Infrastructure Protection. Nordregio Report 2007:5, Stockholm, Sweden.
- [22] Tupi, B. S. (2010). Wind energy is not the answer [available at: http://docs.wind-watch.org/TupiWind-Energy-Is-Not-the-Answer.pdf; last accessed: 13.01.2016].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-00b86511-d0ce-482d-a780-cc951c46bf8f