Thermodynamic analysis of a combined gas turbine power plant with a solid oxide fuel cell for marine applications

Yousri M.A. Welaya1, M. Mosleh1, Nader R. Ammar1
1Department of Naval Architecture & Marine Engineering, Alexandria University, Egypt

Tài liệu tham khảo

Barclay, 2006 Barrett, 2010, GL sees large market for fuel cells to replace marine auxiliary power, Fuel Cells Bulletin, 2010, 3, 10.1016/S1464-2859(10)70305-9 Boyce, 2001 China classification society, 2006. Rules for construction and equipment of ships carrying liquefied gases in bulk. Beijing: China classification society. Corbett, 2007, Mortality from ship emissions: A global assessment, Environmental Science and Technology, 41, 8512, 10.1021/es071686z EG&G Technical Services, 2004. Fuel cell handbook. 7rd ed. West Virginia: National Technical Information Service, U.S. Department of Commerce, pp.10–15. Farr, 2011 Figari, 2011, Evaluation of ship efficiency indexes, 621 Gandiglio, 2013, Thermo-economic analysis of large solid oxide fuel cell plants: Atmospheric vs. pressurized performance, Journal of Energy, 55, 142, 10.1016/j.energy.2013.03.059 George, R.A., Veyo, S.E. and Dederer, J.T., 2001. Single module pressurized fuel cell turbine generator system. US Patent (pending), WO 01/06589 A1. Ghirardo, 2011, Heat recovery options for onboard fuel cell systems, Journal of Hydrogen Energy, 36, 8134, 10.1016/j.ijhydene.2011.01.111 Greensmith, 2010 Holland, 2007, Design of a500 W PEM fuel cell test system IMO-IGC Code. 2002. International gas code for construction and equibment of ships carrying liquified gases in bulk. United Kingdom: IMO. Kumm, 1990, Marine and naval applications of fuel cells for propulsion: The Process Selection, Journal of Power Sources, 29, 169, 10.1016/0378-7753(90)80017-8 Larminie, 2003 Lisbona, 2005, High-temperature fuel cells for fresh water production, Journal of Desalination, 182, 471, 10.1016/j.desal.2005.03.025 MAN B&W. 2010. Exhaust gas emission control today and tomorrow. Application on MAN B&W Two-stroke Marine Diesel Engines. Denmark, Copenhagen: MAN Diesel. Maroju, 2002 Raja, 2006 Rattenbury, N. and Fort, E., 2006. Development of requirements for fuel cells in the marine environment performance and prescription. England: Lloyd's Register Technical Papers. Santin, 2010, Thermo economic analysis of SOFC-GT hybrid systems fed by liquid fuels, Journal of Energy, 35, 1077, 10.1016/j.energy.2009.06.012 Siemens Westinghouse Power Company, 2001. A high efficiency PSOFC/ATS-gas turbine power system, Final Report DE-AC26–9 8FT4045 5, US Department of Energy. Siemens Westinghouse Power Company, 2000. Pressurized solid oxide fuel cell gas turbine power system, Final Report DE-AC2 6–98FT403 55, America: US Department of Energy. Sjöstedt, 2005, Virtual component testing for PEM fuel cell systems: An efficient, high-quality and safe approach for suppliers and OEM's, 1 Subhash, 2004 Walsh, 2004, 200 Welaya, 2011, A comparison between fuel cells and other alternatives for marine electric power generation, International Journal of Naval Architecture and Ocean Engineering, 3, 141, 10.2478/IJNAOE-2013-0057 Winkler, 1998, Electrolytes, 525 Winkler, 1999, 1150