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Low-power gas turbines

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper overviews the development of small scale gas turbines. It analyses the possibilities of their potential evolution in the arrangements of gas turbines systems and defines the main tasks and aims for the design of one-stage compressors and radial expanders. The analysis concerns also characteristic features of combustors and regeneration heat exchangers. It finally determines trends, which are necessary for further improvement of small scale gas turbines.
Rocznik
Tom
Strony
39--58
Opis fizyczny
Bibliogr. 40 poz., rys., tab.
Twórcy
  • Silesian University of Technology, Institute of Power Engineering and Turbomachinery, Konarskiego 18, 44-100 Gliwice, Poland, chmielniak@imiue.polsl.pl
Bibliografia
  • [1] Turbomachinery International Handbook 2005, vol 45, 6.
  • [2] Turbomachinery International Handbook 2004, vol 44, 6.
  • [3] Chmielniak T.: Conceptions of the gas turbine cycles with the external and internal combustion Research Report of the Instutite of Power Engineering and Turbomachinery, Pol. Śl., Gliwice 2004, (in Polish).
  • [4] Chmielniak T., Kosman G., Kosman W.: Research problems and applications of biomass fueled gas turbines cycles, Proc. of Seminar “Możnosti Energetickeho vyużiti Biomasy”, VSB– TU Ostrava, 27-29.04.2005, 11-20.
  • [5] Chmielniak T., Lepszy S.: Biomass extermal Combustion parallel compled with the gas turbine unit, Proc. of Seminar “Możnosti Energetickeho vyużiti Biomasy”, VSB – TU Ostrava, 27-29.04.2005, 21-27.
  • [6] Traverso A.F., Massardo: Thermoeconomic analysis of mixed gas-steam cycles, Applied Thermal Engineering, Elsevier Science, 22, 2002, 1-21.
  • [7] Parenta J., Traverso A., Massardo A.F.: Micro humid air cycle for distributed power generation, Power-Gen 2002, Milan, July 2002.
  • [8] Parente J., Traverso A., Massardo A.F.: Micro humid air cycle. Part A: Thermodynamic and technical aspects, ASME Paper GT 2003-38326, Part B – Thermoeconomic analysis, ASME Paper 2003-38328, 2003.
  • [9] Satoshi Dodo al al.: Development of an advanced microturbine system using humid air turbine cycle, ASME Paper GT 2004-54337.
  • [10] Touchton G.L. i inni: A novel gas turbine product line for onsite generation and combined heat and power between 400 kWe and 1,6 MWe, ASME Paper GT 2004-54257.
  • [11] Takase K., Furukawa H., Nakano K.: A Preliminary study of an intercooled and regenerative microgasturbine below 300 kW, ASME Paper 2002-GT-30403, 2002.
  • [12] Banta A.D.: Experimental inlet air cooling of a 75 kW gas turbine, ASME Paper GT 2004-53481, 2004.
  • [13] Zheng Q., Li M., Sun Y.: Thermodynamic performance of wet compression and regenerative (WCR) gas turbine, ASME Paper GT-2003-38517, 2003.
  • [14] Sexton W., Sexton M.: The effects of wet compression on gas turbine engine operating performance, ASME Paper GT 2003-38045, 2003.
  • [15] Chmielniak T.: Turbomachinery, Wyd. Pol. Śląskiej, Gliwice 1997, (in Polish).
  • [16] Bajle O.E.: Turbomachines: A Guide to Design Selection and Theory, John Wiley and Sons. Inc. 1981.
  • [17] Gong Y., Sirakov B.T., Epstein A.H., Tan C.S.: Aerothermodynamics of micro-turbomachinery, ASME Paper GT 2004-53877, 2004.
  • [18] Zangenek M.: Compressible three dimensional blade design method for radial and mixed flow turbomachinery blades, Int. J. Numerical Methods in Fluids, Vol. 13, 500-624.
  • [19] Ashihara K. i inni: Optimization of microturbine aerodynamics using CFD, Inversce Design and FEM Structural Analysis (1st Report: Compressor Design), ASME Paper GT 2004-53431, 2004.
  • [20] Watanabe H. i inni: Optimization of microturbine aerodynamics using CFD, Inverse Design and Structural Analysis (2nd Report: Turbine Design), ASME Paper GT 2004-53583.
  • [21] Miller M.J., Durschmidt D.F., Medlock A., Sandel W.A.: An integrated design system for fans, compressors, and turbines: Part 1 – Overview ASME Paper GT 2004-53631, 2004.
  • [22] Sondel W.A., Miller M.J.: An integrated design system for fans, compressors and turbines. Part 2 – Interactive interface, ASME Paper GT 2004-53632, 2004.
  • [23] Durschmidt D.F., Medlock A., Miller M.J.: An integrated design system for fans, compressors, and turbine: Part 3 – Fan and compressor airfoil geometry generators, ASME Paper GT 2004-53636, 2004.
  • [24] Brun K. i inni: A Novel centrifugal flow gas turbine design, ASME Paper GT 2004-53063, 2004.
  • [25] Sieros G., Kefalakis M., Papailion K.D.: Improving turbine performance by use of CFD, ASME Paper GT 2004-53737, 2004.
  • [26] Politis E.S., Giannakoglou K.: A Pressure-based algorithm for high-speed turbomachinery flows, Int. J. Numerical Methods Fluids, 25, 1997, 6380.
  • [27] Sirakov B., Gong Y., Epstein A., Tan Ch.: Design and characterization of micro-compressor impellers, ASME Paper GT 2004-53332, 2004.
  • [28] Lidtke O., Schulz A., Witting S.: Design study of a lean premixed prevaporized counter flow combustion for a micro gas turbine, ASME Paper GT 2002-30074, 2002.
  • [29] Croce G., Mori G., Parente J.: Assessment of traditional and flamelets models for micro turbine combustion chamber optimization, ASME Paper GT 2003-38385, 2003.
  • [30] Bohn D., Lepers J.: Effects of biogas combustion on the operation characteristics and pollutant emissions of a micro gas turbines, ASME Paper GT 2003-38767, 2003.
  • [31] Davondzadeh F., Nan-Suey Li: Numerical prediction of non-reacting and reacting flow in a model gas turbine combustor, ASME Paper 2004-53496, 2004.
  • [32] Tredway B. i inni: Design of ceramic components for an advanced micro-turbine engine, ASME Paper GT 2004-54205, 2004.
  • [33] Cameretti M.C., Tuccillo R.: Comparing different solutions for the micro-gas turbine combuster, ASME Paper GT 2004-53286, 2004.
  • [34] Mc Donald C.F.: Low cost recuperator concept for microturbine applications, ASME Paper 2000 GT-167, 2000.
  • [35] Kang Y., McMeirman R.: Annular recuperator development and performance test for 200 kW microturbine, ASME Paper GT 2003-38522, 2003.
  • [36] McDonald C.F.: Recuperator considerations for future higher efficiency microturbines, Applied Thermal Eng. 23, 2003, 1463-1487.
  • [37] Kesseli J., Wolf T., Nash J., Freedman S.: Micro, industrial, and advanced gas turbines employing recuperators, ASME Paper GT 2003-38938.
  • [38] Chiang H.-W.D., Wang C.-H., Hsu C.-N.: Performance testing of a microturbine generator set with twin rotating disk regenerators, ASME Papers GT 2004-53467.
  • [39] Traverso A., Zanzarsi F., Massardo A., Cheope: A tool for the opitmal design of compact recuperators, ASME Paper GT 2004-54114, 2004.
  • [40] Rodgers C.: 25-5 kWe microturbine design aspects, ASME Paper 2000 – GT-0626, 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM2-0047-0022
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