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Power enhancement of the Brayton cycle by steam utilization

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents thermodynamic analysis of the gas-steam unit of the 65 MWe combined heat and power station. Numerical analyses of the station was performed for the nominal operation conditions determining the Brayton and combined cycle. Furthermore, steam utilization for the gas turbine propulsion in the Cheng cycle was analysed. In the considered modernization, steam generated in the heat recovery steam generator unit is directed into the gas turbine combustion chamber, resulting in the Brayton cycle power increase. Computational flow mechanics codes were used in the analysis of the thermodynamic and operational parameters of the unit.
Rocznik
Strony
39--50
Opis fizyczny
Bibliogr. 25 poz.,Rys., tab.,
Twórcy
autor
autor
  • Wroclaw University of Technology, Faculty of Mechanical and Power Engineering, Wybrzeże Wyspiańskiego 27, 50-370 Wroclaw, Poland, pawel.ziolkowski@imp.gda.pl
Bibliografia
  • [1] BADUR J.: Development of the Energy Concept. Wydawnictwa IMP PAN, Gdańsk 2009 (in Polish).
  • [2] BADUR J.: Five lectures of contemporary fluid termomechanics. Gdansk 2005 (in Polish), www.imp.gda.pl/fileadmin/doc/o2/z3/.../ 2005_piecwykladow.pdf
  • [3] CARAPELLUCCI R., MILAZZO A.: Repowering combined cycle power plants by a modified STIG configuration. Energ Convers. Manage. 48(2007), 1590-1600.
  • [4] CHENG D.Y.: Regenerative parallel compound dual-fluid heat engine. US Patent 1978, No. 4128994.
  • [5] CHENG D.Y.: The distinction between Cheng and STIG cycle. In: Proc. ASME EXPO 2006, GT-2006-90382, 1-17.
  • [6] CHRZCZONOWSKI A.: Cheng cycle as proecological electrical and heat energy source. PhD thesis, Wroclaw University of Technology, Wroclaw 2006 (in Polish).
  • [7] JAROSIŃSKI J.: Clean combustion technology. WNT, Warszawa 1996 (in Polish).
  • [8] JESIONEK K., CHRZCZONOWSKI A., BADUR J., LEMAŃSKI M.R On the parametric analysis of performance of advanced Cheng cycle. Zeszyty Naukowe Katedry Mechaniki Stosowanej 23(2004), 191-196 (in Polish).
  • [9] JONSON M., YAN J.: Humidified gas turbine — a review of proposed and implemented cycles. Energy 30(2005), 1013-1078.
  • [10] NISHIDA K., TAKAGI T., KINOSHITA S.: Regenerative steam-injection gas-turbine systems. Applied Energy 81(2005), 231-246.
  • [11] PAWLIK M., KOTLICKI T.: Combined gas-steam cycles in power engineering. In: Proc. conf. "Elektrownie cieplne", Słok 2001, 53-64.
  • [12] POULLIKKAS A.: An overview of current and future sustainable gas turbine technologies. Renew. Sust. Energ. Rev. 9(2005), 409-443.
  • [13] SAAD M.A., CHENG D.Y.: The new LM2500 Cheng cycle for power generation and cogeneration. Energ Convers. Manage. 38(1997), 1637-1646.
  • [14] SRINIVAS T., GUPTA A.V., REDDY B.V.: Sensitivity analysis of STIC based combined cycle with dual pressure HRSG. Int. J. Thermal Sci. 47(2008), 1226-1234.
  • [15] TOPOLSKI J., LEMAŃSKI M., BADUR J.: Mathematical model of high temperature fuel cell SOFC by COM-GAS code. In: Proc. conf. "Research & Development in Power Engineering, PBEC 2003", Warszawa 2003 (in Polish).
  • [16] WANG F.J., CHIOU J.S.: Performance improvement for a simple cycle gas turbine GENSET - a retrofitting example. Appl. Thermal Eng. 22(2002), 1105-1115.
  • [17] WOŁONCEWICZ Z., BURACZEWSKI J.: Experience of exploitation of gas-steam cycle in EC Gorzow S.A. 1999-2003. In: Proc. conf. "Konferencja Elektrownie i elektro-ciepłownie gazowe i gazowo-parowe 2003", Poznań-Kiekrz 2003, 55-62 (in Polish).
  • [18] ZIÓŁKOWSKI P.: Numerical analysis of exploitation conditions of Gorzow CHP heat cycle before and after modernization. MSc thesis, Gdańsk University of Technology, Gdańsk 2011 (in Polish).
  • [19] Directive 2010/75/eu of the European Parliament and of the Council of 24 November 2010 on industrial emissions (integrated pollution prevention and control).
  • [20] http://www.ecgorzow.pgegiek.pl
  • [21] ZIÓŁKOWSKI P., LEMAŃSKI M., BADUR J., NASTAŁEK L.: Power augmentation of PGE Gorzow's gas turbine by steam injection - thermodynamic overview. Rynek Energii 98(2012), 1, 161-167.
  • [22] http://npbe.pl
  • [23] TOPOLSKI J.: Combustion diagnosis in combined gas-steam cycles. PhD thesis, IF-FM PAS, Gdansk 2002 (in Polish).
  • [24] JESIONEK K., CHRZCZONOWSKI A.: On the influence steam injection into combustion chamber on energetic properties gas turbine. Modelowanie Inżynierskie 32(2006), 199-204.
  • [25] Aspen Plus 11.1 User Guide. Aspentech 2001.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-3656-4173
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