accessibility__skip_menu__jump_to_main

Full text: Method to identify fuel sulphur content (FSC) violations of ongoing vessels using CFD modelling

681 EPA. (2009). Regulatory impact analysis: Control of emissions of air pollution from category 3 marine 
682 diesel engines. Ann Arbor, Ml: Office of Transportation and Air Quality. US Environmental 
683 Protection Agency. https://archive.epa.gov/region9/mediacenter/web/pdf/420r09019.pdf 
684 EU. (2015). Commission Implementing Decision (EU) 2015/253 of 16 February 2015 laying down the rules 
585 concerning the sampling and reporting under Council Directive 1999/32/EC as regards the sulphur 
586 content of marine fuels. OJ L 41, 17.2.2015, pp. 55-59 (BG, ES, CS, DA, DE, ET, EL, EN, FR, HR, IT, LV, 
587 LT, HU, MT, NL, PL, PT, RO, SK, SL, FI, SV). http://data.europa.eu/eli/dec_impl/2015/253/oj 
688 EU. (2016). Directive (EU) 2016/802 of the European Parliament and of the Council of 11 May 2016 
589 relating to a reduction in the sulphur content of certain liquid fuels (codification). O/ L 132, 
590 21.5.2016, p. 58-78 (BG, ES, CS, DA, DE, ET, EL, EN, FR, HR, IT, LV, LT, HU, MT, NL, PL, PT, RO, SK, SL, 
591 FI, SV). http://data.europa.eu/eli/dir/2016/802/0j 
692 Eyring, V., Isaksen, I. S. A., Berntsen, T., Collins, W. J., Corbett, J. J., Endresen, O., Grainger, R. G., 
693 Moldanova, J., Schlager, H., & Stevenson, D. 5. (2010). Transport impacts on atmosphere and 
694 climate: Shipping. Atmospheric Environment, 44(37), 4735-4771. 
695 https://doi.org/10.1016/j.atmosenv.2009.04.059 
696 Goldsworthy, L., & Goldsworthy, B. (2015). Modelling of ship engine exhaust emissions in ports and 
697 extensive coastal waters based on terrestrial AIS data - An Australian case study. Environmental 
698 Modelling and Software, 63, 45-60. https://doi.org/10.1016/j.envsoft.2014.09.009 
599 Grigoriadis, A., Mamarikas, S., loannidis, I., Majamäki, E., Jalkanen, J.-P., & Ntziachristos, L. (2021a). 
700 Development of exhaust emission factors for vessels: A review and meta-analysis of available data. 
701 Atmospheric Environment: X, 12, 100142. https://doi.org/10.1016/j.aeaoca.2021.100142 
702 Grigoriadis, A., Mamarikas, S., Ntziachristos, L., Majamäki, E., & Jalkanen, J.-P. (2021b). SCIPPER Project 
703 D4.1 —- New set of emission factors and activity information. https://www.scipper-project.eu/ 
704 Gualtieri, C., Angeloudis, A., Bombardelli, F., Jha, S., & Stoesser, T. (2017). On the values for the 
705 turbulent schmidt number in environmental flows. In F/uids (Vol. 2, Issue 2). MDPI AG. 
706 https://doi.org/10.3390/fluids2020017 
707 IMO. (2016). Marine Environment Protection Committee (MEPC), 70th Session, 24-28 October 2016. 
708 https://www.imo.org/en/MediaCentre/MeetingSummaries/Pages/MEPC-70th-session.aspx 
709 IMO. (2020). Fourth IMO GHG study. Full report. 
710 https://www.imo.org/en/OurWork/Environment/Pages/Fourth-IMO-Greenhouse-Gas-Study- 
711 2020.aspx 
712 Kattner, L., Mathieu-Üffing, B., Burrows, J. P., Richter, A., Schmolke, S., Seyler, A., & Wittrock, F. (2015). 
713 Monitoring compliance with sulfur content regulations of shipping fuel by in situ measurements of 
714 ship emissions. Atmospheric Chemistry and Physics, 15(17), 10087-10092. 
715 https://doi.org/10.5194/acp-15-10087-2015 
716 Korczewski, Z. (2021). Methodology for determining the elemental composition, as well as energy and 
717 ignition properties of the low-sulfur marine fuels. Combustion Engines, 186(3), 96-102. 
718 https://doi.org/10.19206/CE-141573 
30
	        
Waiting...

Note to user

Dear user,

In response to current developments in the web technology used by the Goobi viewer, the software no longer supports your browser.

Please use one of the following browsers to display this page correctly.

Thank you.