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Analysis of Possible Application of High-Temperature Nuclear Reactors to Contemporary Large-Output Steam Power Plants on Ships Cover

Analysis of Possible Application of High-Temperature Nuclear Reactors to Contemporary Large-Output Steam Power Plants on Ships

Open Access
|Jun 2016

References

  1. 1. PortalMorski.pl : Sea traffic statistical data (in Polish), http://www.portalmorski.pl/info/statystyki 14.02.2014.
  2. 2. Badur J.: Modelling of balanced combustion in gas turbines (in Polish), Publ. IMP PAN, Gdańsk, 2003
  3. 3. Dzida M., Mucharski J.: On the possible increasing of efficiency of ship power plant with the system combined of marine diesel engine, gas turbine and steam turbine in case of main engine cooperation with the gas turbine fed in parallel and the steam turbine, Polish Maritime Research, No. 2 (60), 2009, Vol. 16 p.40÷4410.2478/v10012-008-0020-x
  4. 4. Jezierski G: Nuclar energy yesterday and to morrow (in Polish), Scientific Technical Publishing House (Wydawnictwo Naukowo-Techniczne), Warsaw 2005
  5. 5. Department of Nuclear Science and Engineering, MIT: Modular Pebble Bed Reactor, http://web.mit.edu/pebble-bed/14.02.2014
  6. 6. Kubowski J.: Problems of interaction between nuclear power plants and electric power network (in Polish), Elektroenergetyka, No. 4 (670), 2010, pp.218÷221
  7. 7. Przybylski M., Głuch J.: Selected design and construction aspects of supercritical steam generators for high temperature reactors. Archives of Energetics, No 2 Vol. 42, 2012, pp.113÷120
  8. 8. Błaszczyk A., Głuch J., Gardzielewicz A.: Operating and economic conditions of cooling water control for marine steam turbine condenser, Polish Maritime Research, No. 3 (70), Vol. 18, 2011, pp.48÷5410.2478/v10012-011-0017-8
  9. 9. Perycz S.: Gas and steam turbines (in Polish), Publishing House of Gdansk University of Technology (Wydawnictwo Politechniki Gdańskiej), Gdańsk 1988
  10. 10. Stein Z.: Electric engines and drives (in Polish), School and Pedagogical Publishers (Wydawnictwo Szkolne i Pedagogiczne), Warszawa 1985
  11. 11. Dzida M.: On the possible increasing of efficiency of ship power plant with the system combined of marine diesel engine, gas turbine and steam turbine, at the main engine - steam turbine mode of cooperation, Polish Maritime Research, No.1 (59), 2009, Vol. 16, pp. 47÷5210.2478/v10012-008-0010-z
  12. 12. Dzida M., Giltler J., Dzida S.: On the possible increasing of efficiency of ship power plant with the system combined of marine diesel engine, gas turbine and steam turbine in case of main engine cooperation with the gas turbine fed in series and the steam turbine, Polish Maritime Research, No. 3 (61), 2009 Vol. 16, pp. 26÷3110.2478/v10012-008-0029-1
  13. 13. Hagling F.: Variable geometry gas turbines for improving the part-load performance of marine combined cycles - Combined cycle performance, Applied Thermal Engineering, No. 31, 2011, pp.467 ÷ 47610.1016/j.applthermaleng.2010.09.029
  14. 14. Welaya Y., Mosleh M., Ammar N.: Energy analysis of a combined solid oxide fuel cell with a steam turbine power plant for marine applications, J. Marine Sci. Appl., No. 12, 2013, pp.473÷48310.1007/s11804-013-1219-5
  15. 15. Nisan S., Rouyer J., Marcetteau P., Duflo D.: SEMER: A simple code for the economic evaluation of nuclear and fossil energy-based power production systems, Nuclear Engineering and Design, No. 221, 2003, pp.301÷31310.1016/S0029-5493(02)00333-3
  16. 16. Geschwindta J., Lommers L., Southworth F., Shahrokhi F.: Performance and optimization of an HTR cogeneration system, Nuclear Engineering and Design, No. 251, 2012, pp.297÷30010.1016/j.nucengdes.2011.10.029
  17. 17. Teichela H., Pouget-Abadie X.: How the European Pressurized Water Reactor fulfils the utility requirements, Nuclear Engineering and Design, No. 187, 1999, pp. 9÷1310.1016/S0029-5493(98)00253-2
  18. 18. Asiedu-Boateng P., Akaho E., Nyarkob B., Yamoah S.: Modeling and simulation of cogeneration nuclear power plant for seawater desalination, Nuclear Engineering and Design, No. 242, 2012, pp.143÷14710.1016/j.nucengdes.2011.09.037
  19. 19. Lommers L., Shahrokhi F., Mayer III J., Southworth F.: AREVA HTR concept for near-term deployment, Nuclear Engineering and Design, No. 251, 2012, pp.292÷29610.1016/j.nucengdes.2011.10.030
  20. 20. Kowalczyk T.: Power engineering analysis of possible application of a ship steam power plant of 50MW output, equipped with a steam generator heated by helium agent cooling a high temperature nuclear reactor (in Polish), M.Sc. thesis, Gdańsk University of Technology, Gdańsk 2012
  21. 21. Smith C.: The energy challenge, Appl. Petrochem Res, No. 2, 2012, pp.3÷610.1007/s13203-012-0010-x
  22. 22. Sarkisov A., Vysotskii V., Bilashenko V., Barinov N., Kiselev A., Markarov V., Kulakov I., Lepekhin A., Petrunin V., Pichugin A., Krysov S.: Expected radiological and radioecological consequences of operating floating nuclear heat and power plants, Atomic Energy, Vol. 104, No. 3, 2008, pp. 237÷249.10.1007/s10512-008-9022-0
  23. 23. Hirdaris S., Cheng Y., Shallcross P., Bonafoux J., Carlson D., Prince B., Sarris G.: Considerations on the potential use of Nuclear Small Modular Reactor (SMR) technology for merchant marine propulsion, Ocean Engineering, No. 79, 2014, pp.101÷13010.1016/j.oceaneng.2013.10.015
  24. 24. Staliński J., Szewalski R.: Analysis of impact of changes in technical-economic indices of ship power plants onto calculation results of economic profitability of ships (in Polish), Acta Technica Gedanensia No. 1, 1963, Gdańsk 1963.
DOI: https://doi.org/10.1515/pomr-2016-0018 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 32 - 41
Published on: Jun 30, 2016
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 T. Kowalczyk, J. Głuch, P. Ziółkowski, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.