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Adam Mroziński and Izabela Piasecka

Bibliography 1. ACKERMANN, T.: Transmission systems for offshore wind farms. Wind power in power systems, Stockholm: Royal Institute of Technology Stockholm, 2005. 2. BARLOW, J.: Innovation and learning in complex offshore construction projects, Research Policy, 7-8/2000, pp.973-989. 3. (access on: 2014-08-02) 4. CARMEL, E., AGARWAL, R.: The maturation of offshore sourcing of information technology work. Information Systems Outsourcing, 7/2006. 5. CHAKRABARTI, S.: Handbook of offshore engineering. Amsterdam

Open access

Andrzej Tomporowski, Izabela Piasecka, Józef Flizikowski, Robert Kasner, Weronika Kruszelnicka, Adam Mroziński and Kazimierz Bieliński

wpływu na środowisko wybranych środków transportu łopat elektrowni wiatrowych. Logistyka. 2015, 3. 8. Kong, C., Bang, J. and Sugiyama, Y. 2005. Structural investigation of composite wind turbine blade considering various load cases and fatigue life. Energy. 2005, Tom 30. 9. Martinez, E., et al. 2009. Life cycle assessment of a multi-megawatt wind turbine. Renewable Energy. 2009, Tom 34. 10. Piasecka, I. and Mroziński, A. 2015. Selected aspects of building, operation and environmental impact of offshore wind power electric plants. Polish Maritime

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Piotr Srokosz, Ireneusz Dyka and Marcin Bujko

assessment of environmental and economic constraints. European Environment Agency, Technical report No 6/2009. 27. Deep Water. The next step for offshore wind energy. A report by European Wind Energy Agency, July 2013 ( ). 28. Wind in power 2017. Annual combined onshore and offshore wind energy statistics. Wind Europe, February 2018, Brussels, Belgium ( ). 29. Offshore wind in Europe. Key trends and statistics 2017. Wind Europe, February 2018, Brussels, Belgium ( ). 30. DIN 4178

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Andrzej Tomporowski, Józef Flizikowski, Weronika Kruszelnicka, Izabela Piasecka, Robert Kasner, Adam Mroziński and Stepan Kovalyshyn

. 2653-2660 8. Flizikowski J., Kruszelnicka W., Michałowski M., Szala G., Tomporowski A. : Bulkhead door - critical evacuation states. Polish Maritime Research, 24 (1), (2017), pp. 66-71. 9. Flizikowski J., Topoliński T., Opielak M., Tomporowski A., Mroziński A. : Research and analysis of operating characteristics of energetic biomass micronizer, Eksploat. i Niezaw. (Mainten. Reliab.)17 (1), (2015), pp. 19–26 10. Flizikowski, J., Piasecka, I., Kruszelnicka, W., Tomporowski, A., Mroziński, A. : Destruction assessment of wind power plastics blade

Open access

Andrzej Tomporowski, Józef Flizikowski, Marek Opielak, Robert Kasner and Weronika Kruszelnicka

cycle assessment of wind power: comprehensive results from a state-of-the-art approach. The International Journal of Life Cycle Assessment 2013; 18(1): 37-48. 8. Gilingham K, Newell R, Palmer K. Energy efficiency, economics and policy. Annual Review of Resource Economics 2009; 1(1): 597-620. 9. Hau E. Wind turbines: Fundamentals, technologies, application and economics. Berlin: Springler-Verlag, 2006. 10. Kasner R. Ocena korzyści i nakładow cyklu życia elektrowni wiatrowej. Dysertacja. Poznań: Politechnika Poznańska

Open access

Karol Niklas

References 1. European Commission, A policy framework for climate and energy in the period from 2020 up to 2030, impact assessment, COM(2014) 15 final, SWD(2014) 15 final, Eur- Lex. 2014 2. European Commission, Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions on Launching the public consultation process on a new energy market design, Eur- Lex. 2015 3. Wind in power, 2015 European statistics, European Wind Energy

Open access

Yue Chen, Lingyu Yang, Yi Xie and Song Yu


The paper determined the volume ratio of the main hull and side hull and their position characteristic parameter of operation and maintenance trimaran. Numerical simulation technology was used to do the analysis and calculation of trimarans which have different volume ratio of the main and side hull, and on this basis, the paper tried different positions of main and side hull, finally got the trimaran with optimum resistance performance and the chart of trimaran resistance estimation, so as to provide a new way in the selection of feature parameter of offshore wind farm maintenance trimaran and its resistance estimation.

Open access

Czesław Dymarski, Paweł Dymarski and Jędrzej Żywicki

// ARCHIVES OF MECHANICS. -Vol. 64, nr. 2 (2012), s.153-175. 4. Barthelmie R., Pryor S., Frandsen S., Hansen K., Schepers J., K. Rados K., Schlez W., Neubert A., Jensen L. and Neckelmann S.: Quantifying the Impact of Wind Turbine Wakes on Power Output at Offshore Wind Farms. Journal of Atmospheric and Oceanic Technology Vol. 27, 2010, 5. Ackermann T., Söder L.: Wind energy technology and current status: a review, Renewable and Sustainable Energy Reviews, 4 (2000), pp. 315-374 6. Markard J., Petersen R.: The offshore trend

Open access

Leszek Dawid

of wind farms localization in light of new law on investments concerning wind power stations. Infrastructure and Ecology of Rural Areas. No. IV/1/2017 p. 1445–1455. Directive 2001/77/EC of the European Parliament and of the Council of 27 September 2001 on the promotion of electricity produced from renewable energy sources in the internal electricity market. EU OJ L 283, 27/10/2001. Directive 2003/30/EC of the European Parliament and of the Council of 8 May 2003 on the promotion of the use of biofuels or other renewable fuels for transport. EU OJ L 123

Open access

Yang Lua, Liping Suna, Jichuan Kanga and Xinyue Zhang

. Wind in power, 2014 European statistics . 2015. 9. Faulstich, S., Hahn, B., Tavner, P. J.: Wind turbine downtime and its importance for offshore deployment . Wind Energy, 2011, (14), 327–337. 10. Hameed, Z.: Role of grouping in the development of an overall maintenance optimization framework for offshore wind turbines . Proc. Inst. Mech. Eng. Part O J. Risk Reliab. 2012, 226 (6) S1, 584-601. 11. Hameed, Z., Hong, Y.S., Cho, Y.M., Ahn, S.H., Song, C.K.: Condition monitoring and fault detection of WTs and related algorithms: A review. Renew