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Optimization of steam cycles with respect to supercritical parameters Cover

Optimization of steam cycles with respect to supercritical parameters

Open Access
|Jun 2010

References

  1. Avrutskii G. D., Savenkova I. A., Lazarev M. V., Akulenko V. V., Shvarts A. L., Ivanov S. A.: Development of Engineering Solutions for Creation of Turbine Plant for Power Unit With Supercritical Steam Parameters. Power Technology and Engineering Vol. 39, No. 6, 2005;10.1007/s10749-006-0006-8
  2. Baumgartner R.: Advanced Coal Technology to Power the World. World Bank Energy Week, Siemens Power Generation, Germany, 2006;
  3. Beer J. M.: High efficiency electric power generation: The environmental role. Progress in Energy and Combustion Science 33, 2007;10.1016/j.pecs.2006.08.002
  4. Boehm C., Starflinger J., Schulenberg T., Oeynhausen H.: Supercritical Steam Cycle for Lead Cooled Nuclear Systems. Paper No. 035, Proceedings of GLOBAL 2005, Tsukuba, Japan, Oct 9-13, 2005;
  5. Bugge J., Kjaer S.: High-Efficiency Coal-Fired Power Plants Development and Perspectives. Elsam Engineering A/S, 2004;
  6. Chmielniak T.: Power technologies (in Polish). Publishing House of Silesian University of Technology (Wydawnictwo Pol. Śląskiej), Gliwice, 2004;
  7. Chmielniak T.: Development state and prospects of power units for electric power stations based on pulver technique (in Polish). Silesian Cluster for Clean Coal Technologies (Śląski Klaster Czystych Technologii Węglowych), Gliwice, 2007;
  8. Coleman K., Viswanathan R., Shingledecker J., Sarver J., Stanko G., Mohn W., Borden M., Goodstine S.: Boiler Materials for Ultrasupercritical Coal Power Plants. USC Materials, Quarterly Report October, December 2003-January 23, 2004;10.2172/829612
  9. DTI Brochure: Advanced Power Plant Using High Efficiency Boiler/ Turbine. Best Practice Brochure No. BPB010, Carbon Abatement, Technologies Programme, 2006;
  10. Goidich S. J., Wu S., Fan Z., Bose A. C.: Design Aspects of the Ultra- Supercritical CFB Boiler. International Pittsburgh Coal Conference, Pittsburgh, PA, Sept. 12-15, 2005;
  11. Goidich S. J., Fan Z., Sippu O., Bose A. C.: Integration of Ultra- Supercritical OTU and CFB Boiler Technologies. International Pittsburgh Coal Conference, Pittsburgh, PA, Sept. 12-15, 2005;
  12. Golec T. et al.: Scenarios of technological development of power production based on hard and brown coal versus energy supply safety of the state (in Polish). Instytut Energetyki, Zakład Procesów Cieplnych (CPC), Katowice, 2006;
  13. Golec T., Rakowski J., Świrski J.: Prospects of technical progress in electric power production based on hard coal, brown coal as well natural gas with taking into account effects to the environment (in Polish). Elektroenergetyka, Nr 1/2004 (48), 2004;
  14. Holcomb G. R., Alman D. E., Bullard S. B., Covino Jr. B. S., Cramer S. D., Ziomek-Moroz M.: Ultra-Supercritical Steam Corrosion. U. S. Department of Energy, Albany Research Center, 1450 Queen Avenue SW, Albany, OR 97321, 2003;
  15. Hurd P., Truckenmueller F., Thamm N., Pollak H., Neef M., Deckers M.: Modern Reaction HP/IP Turbine Technology Advances & Experiences. Proceedings of PWR2005-50085, ASME POWER, Chicago, Illinois, April 5-7, 2005;10.1115/PWR2005-50085
  16. Kjaer S., Bugge J., Stolzenberger C.: Europeans still aiming for 700°C steam. MPS Review Supercritical PF Technology, Modern Power Systems - November 2004;
  17. Kolev N., Schaber K., Kolev D.: A new type of a gas-steam turbine cycle with increased efficiency. Applied Thermal Engineering 21, 2001;10.1016/S1359-4311(00)00059-4
  18. Kosowski K.: Ship Turbine Power Plants Fundamentals of Thermodynamical Cycles. Publishing House of Gdańsk University of Technology (Wydawnictwo Politechniki Gdańskiej), Gdańsk; 2005;
  19. Kosowski K. et al.: Steam and gas turbines with examples of Alstom technology. Alstom, France, Switzerland, United Kingdom, Poland, 2nd Edition - three parts in one volume, ISBN 978-83-925959-3-9, 2007;
  20. Kretzschmar H.-J., Cooper J. R., Dittmann A., Friend D. G., Gallagher J. S., Harvey A. H., Knobloch K., Mareš R., Miyagawa K., Okita N., Stöcker I., Wagner W., Weber I.: Supplementary Backward Equations T.p, h…, v"p, h…, and T"p, s…, v"p, s… for the Critical and Supercritical Regions. Region 3… of the Industrial Formulation IAPWS-IF97 for Water and Steam. Journal of Engineering for Gas Turbines and Power, Vol. 129, January 2007;10.1115/1.2181598
  21. Leizerovich A. S.: Steam Turbines for Modern Fossil-fuel Power Plants. ISBN:0881735485, Inc NetLibrary, 2007;
  22. Masuyama F.: History of Power Plants and Progress in Heat Resistant Steels. ISIJ International, Vol. 41, No. 6, 2001;10.2355/isijinternational.41.612
  23. Nowak W.: Development state and prospects of power units of electric power stations based on fluid technique (in Polish). Silesian Cluster for Clean Coal Technologies (Śląski Klaster Czystych Technologii Węglowych), Gliwice, 2007;
  24. Oakey J. E., Pinder L. W., Vanstone R., Henderson M., Osgerby S.: Review of Status of Advanced Materials for Power Generation. Report No. COAL R224, DTI/Pub URN 02/1509, 2003;
  25. Paul I.: Supercritical coal fired power plants. A Technology Successfully Deployed in Developing Countries. Siemens Power Generation, 2002;
  26. Perycz S.: Steam and gas turbines (in Polish). Publishing House of Gdańsk University of Technology (Wydawnictwo Politechniki Gdańskiej), Gdańsk; 1988;
  27. Pitsinki J.: An example of novel energy technologies for power production - OTSC CFB boiler. International Conference on Early Stage Energy Technologies and Tool Training Seminar for Assessment of their Market Potential, 31th May, 2005;
  28. Radcenco V., Vasilescu E. E., Popescu G., Apostol V.: New approach to thermal power plants operation regimes: maximum power versus maximum efficiency. International Journal of Thermal Sciences 46, 2007;10.1016/j.ijthermalsci.2007.01.022
  29. Rakowski J., Pinko L., Świrski J.: Ecological aspects of electric power production by domestic thermal electric power stations (in Polish). Int. Conf. on Ecological Aspects of Electric Power Production (Międzynarodowa Konferencja Ekologiczne Aspekty Wytwarzania Energii Elektrycznej), Warsaw, 14-16 November 2001;
  30. Rao A. D., Samuelsen G. S., Robson F. L., Geisbrecht R. A.: Coal-Based Power Plant System Configurations for the 21st century. GT2003-38942, Proceedings of ASME Turbo Expo 2003, Atlanta, Georgia, USA, June 16-19, 2003;10.1115/GT2003-38942
  31. Rao A. D., Samuelsen G. S., Robson F. L., Geisbrecht R. A.: Coal-Based Power Plant System Configurations for the 21st century. GT2004-53105, Proceedings of ASME Turbo Expo 2004, Vienna, Austria, June 14-17, 2004;10.1115/GT2004-53105
  32. Retzlaff K. M., Ruegger W. A.: Steam Turbines for Ultra-Supercritical Power Plants. GER-3945A, GE Power Generation, 1996;
  33. Riordan T: New Generation Strategy of Ultra-Supercritical Technology. New Generation Design & Eng., APP Site, 2006;
  34. Romanosky R. R., Rawls P. A., Purgert R. M., Viswanathan V. R.: Steam Turbine Materials for Ultra Supercritical Coal Power Plants. Advanced Research, National Energy Technology Laboratory, 08/2007;
  35. Rosenkranz J., Wichtmann A.: Balancing economics and environmental friendliness -the challenge for supercritical coal-fired power plants with highest steam parameters in the future. Siemens Power Generation, Germany, 2005;
  36. Susta M. R., Peter P.: Supercritical Steam Power Plants -an Attractive Option for Malaysia. Kuala Lumpur 28-29 April 2003, Malaysia Power 2003;
  37. Susta M. R., Seong K. B.: Supercritical and Ultra-Supercritical Power Plants - SEA's Vision or Reality?. POWERGEN ASIA 2004;
  38. Tulkki V.: Supercritical Water Reactors. A Survey on International State of Research in 2006, Otaniemi, November 6, 2006;
  39. Turek M.: Scenarios of technological development of coal-based power industry (in Polish). Instytut Energetyki, Zakład Procesów Cieplnych (CPC), Katowice, 2006;
  40. Venäläinen I., Psik R.: 460 MWe Supercritical CFB Boiler Design for Łagisza Power Plant. PowerGen, Barcelona, Spain, 2004;
  41. Viswanathan R., Henry J. F., Tanzosh J., Stanko G., Shingledecker J., Vitalis B., Purgert R.: U. S. Program on Materials Technology for Ultra- Supercritical Coal Power Plants. Journal of Materials Engineering and Performance, Volume 14 (3), June 2005;10.1361/10599490524039
  42. Viswanathan R., Coleman K., Rao U.: Materials for ultra-supercritical coal-fired power plant boilers. International Journal of Pressure Vessels and Piping, 83, 2006;10.1016/j.ijpvp.2006.08.006
  43. Wagner W.,·Kretzschmar H.-J.: International Steam Tables Properties of Water and Steam Based on the Industrial Formulation IAPWS-IF97 Tables, Algorithms, Diagrams, and CD-ROM Electronic Steam Tables. Springer-Verlag, Berlin, Heidelberg, 2008;
  44. Watanabe S., Tani T., Takahashi M., Fujii H.: 495-MW Capacity Genesee Power Generating Station Phase 3: First Supercritical Pressure Coal-fired Power Plant in Canada., Hitachi, Ltd. and Babcock-Hitachi, 2001;
  45. Wibberley L., Cottrell A., Palfreyman D., Scaife P., Brown P.: Techno- Economic Assessment of Power Generation Options for Australia. Technology Assessment Report 52, 2006;
  46. Wright I. G., Maziasz P. J., Ellis F. V., Gibbons T. B., Woodford D. A.: Materials Issues For Turbines For Operation In Ultra-Supercritical Steam. Research sponsored by the U. S. Department of Energy, Office of Fossil Energy, Advanced Research Materials Program, under Contract DE-AC05-00OR22725 with UT-Battelle, LLC., 2004;
  47. Yi Y-S., Watanabe Y., Kondo T., Kimura H., Sato M.: Oxidation Rate of Advanced Heat-Resistant Steels for Ultra-Supercritical Boilers in Pressurized Superheated Steam. Journal of Pressure Vessel Technology, Vol. 123, 2001;10.1115/1.1373656
  48. Zaporowski B.: Economic effectiveness analysis of electric power production by the system's electric power stations and combined thermal-electric power production by small thermal-electric power plants (in Polish). Proceedings of 3rd Scientific Technical Conference on Electric Power Plants and Thermal-Electric Power Gas and Steam- Gas Fed Plants (Materiały III Konferencji Naukowo-Technicznej: Elektrownie i elektrociepłownie gazowe i gazowo-parowe), Poznań- Kiekrz, 2005;
  49. Zaporowski B.: Economic effectiveness analysis of gas-fired thermal-electric power plants after introduction of origin certificates of highly efficent co-generation (in Polish). Rynek Energii nr 6 (73), 2007;
  50. Ziębik A.: Future EU Energy MIX -Will Coal Play an Important Role?. Silesian Cluster for Clean Coal Technologies (Śląski Klaster Czystych Technologii Węglowych), Gliwice, 2007.
DOI: https://doi.org/10.2478/v10012-008-0043-3 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 45 - 51
Published on: Jun 16, 2010
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2010 Marian Piwowarski, published by Gdansk University of Technology
This work is licensed under the Creative Commons License.