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The Baltic Sea circumstances significant for its critical infrastructure networks

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper is an overview of the Baltic Sea and its basin characteristic. The geographical location and climate and weather of the Baltic Sea region according to its zones and seasons were described. Moreover, the abiotic parameters of water such as salinity, oxygen concertation and temperature distribution in the water column were explained. Some of these characteristic parameters has influence on the critical infrastructure networks existed in the Baltic Sea region as well as the critical infrastructure objects activity has significant impact on these parameters changes and consequently the environmentally quality of the region. Finally, the Baltic Sea as the sensitive area is presented.
Rocznik
Strony
37--42
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
  • Maritime University, Gdynia, Poland
  • Maritime University, Gdynia, Poland
Bibliografia
  • [1] Baltic University. (2003). Environmental Science – understanding, protection, and managing the environment in the Baltic Sea region. Ryden, L., Migula, P. & Andersson, M. (ed.). The Baltic University Press, Uppsala.
  • [2] 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.
  • [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] Blokus-Roszkowska, A., Kołowrocki, K. & Soszyńska-Budny, J. (2016). Baltic Electric Cable Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 29-36.
  • [5] 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.
  • [6] Drzazga, M., Kołowrocki, K. & SoszyńskaBudny, J. (2016). Oil Pipeline Critical Infrastructure Network. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 53-60.
  • [7] Dziula, P. & Kołowrocki, K. (2016). Global Baltic Network of Critical Infrastructure Networks. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 3, 15-20.
  • [8] Guze, S. & Kołowrocki, K. (2016). Joint Network of Port, Shipping and Ship Traffic and Operation Information Critical Infrastructure Networks. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 61-64.
  • [9] 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.
  • [10] HELCOM (2007). Climate change in the Baltic Sea Area: HELCOM thematic assessment in 2007, Balt. Sea Environ. Proc. No. 111.
  • [11] HELCOM (2010). Towards an ecologically coherent network of well-managed Marine Protected Areas – Implementation report on the status and ecological coherence of the HELCOM BSPA network. Balt. Sea Environ. Proc. No. 124B.
  • [12] HELCOM (2013).Climate change in the Baltic Sea Area – HELCOM thematic assessment in 2013, Balt. Sea Environ. Proc. No. 137.
  • [13] HELCOM (2014). Convention on the protection of the marine environment of the Baltic Sea area, 1992, within the amendments to its annexes adopted by the Helsinki Commission in 2000, 2001, 2003, 2007 and 2013. [available at: http://www.helcom.fi/Documents/About%20us/Co nvention%20and%20commitments/ Helsinki%.20Convention/Helsinki%20Convention _July%202014.pdf; accessed 23.01.2016].
  • [14] Kołowrocki, K., Kuligowska, E. & Reszko, M. (2016). Methodology for oil rig critical infrastructure network safety and resilience to climate change analysis. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 7, 2, 187-195.
  • [15] 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.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c675567a-da37-4186-a555-e4c34ea14de4
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