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An approach to enhance combined cycle performance by integration with a gas pressure reduction station

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A novel system enhancing the performance of a combined cycle gas turbine has been proposed in the paper, based on the example of the thermal-electric power station currently under construction in Włocławek. Analysis shows that annual average electrical efficiency rises by 0.6% and that power output rises by up to 4%, depending on the ambient conditions. GE's GateCycle software was used in the modeling.
Rocznik
Strony
79--89
Opis fizyczny
Bibliogr. 15 poz., rys., tab., wykr.
Twórcy
autor
  • Institute of Thermal Technology, Silesian University of Technology, Konarskiego 22, 41-106 Gliwice, Poland
autor
  • Institute of Thermal Technology, Silesian University of Technology, Konarskiego 22, 41-106 Gliwice, Poland
autor
  • Research Center for Energy Resources and Consumption, Universidad Zaragoza, C/ Mariano Esquillor Gómez 15, 50-018 Zaragoza, Spain
Bibliografia
  • [1] M. S. Briesch, R. L. Bannister, I. S. Diakunchak, D. J. Huber, Combined cycle designed to achieve greater than 60 percent efficiency, in: American Society of Mechanical Engineers, International Gas Turbine Institute (Publication) IGTI, Vol. 9, 1994.
  • [2] P. Chiesa, E. Macchi, A thermodynamic analysis of different options to break 60 of Mechanical Engineers, International Gas Turbine Institute, Turbo Expo (Publication) IGTI, Vol. 1, 2002, pp. 987–1002.
  • [3] F. J. Bartos, Irsching 4 gas and steam block with forward-looking power plant engineering. best marks with respect to efficiency and flexibility, BWK - Energie-Fachmagazin 63 (9) (2011) 24–26.
  • [4] PKN Orlen Media Center, accessed: May 2013.URL www.orlen.pl/PL/CentrumPrasowe/Strony/ORLEN-i-General Electric-International-Inc_podpisaly-kontrakt-na-wykonawstwo-bloku-gazowo-parowego-we-Wloclawku.aspx
  • [5] E. Pyzik, S. Jarzębowski, A. Miller, Impact of inlet air cooling on gas turbine performance, Journal of Power Technologies 92 (4) (2012) 249–257.
  • [6] M. Farzaneh-Gord, M. Deymi-Dashtebayaz, A new approach for enhancing performance of a gas turbine, Applied Energy 86 (2009) 2750–2759.
  • [7] H. A. Navarro, L. C. Cabezas-Gómez, Effectiveness-NTU computation with a mathematical model for cross-flow heat exchangers, Brazilian Journal of Chemical Engineering 24 (04) (2007) 509–521.
  • [8] E. Kelner, T. E. Owen, D. L. George, A. Minachi, M. G. Nored, C. J. Schwartz, Development of a low-cost inferential natural gas energy flow rate prototype retrofit module, Topical report, for the reporting period: September 2000–january 2002, Southwest Research Institute (March 2004).
  • [9] A. M. Bassily, Modeling, numerical optimization, and irreversibility reduction of a triple-pressure reheat combined cycle, Energy 32 (5) (2007) 778–794.
  • [10] Ministerstwo Transportu, Budownictwa i Gospodarki Wodnej, accessed: May 2013. URL www.transport.gov.pl/2-48203f1e24e2f-1787735-p_1.htm
  • [11] Cryogenic equipment by Cryostar, accessed: May 2013. URL www.cryostar.com/web/turboexpanders.php
  • [12] K. Kaczorowski, Zakłady Azotowe "Włocławek" – dzisiaj anwil. szkic na 40-lecie, Przemysł Chemiczny 85 (7) (2006) 454–455.
  • [13] Yara international chemical company, accessed: May 2013. URL www.yara.com
  • [14] Chemical Engineering Research Information Center, accessed: May 2013. URL www.cheric.org
  • [15] Carroll, J.: Natural Gas Hydrates, Second Edition: A Guide for Engineers. Gulf Professional Publishers, 2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-221d768d-1efa-4d29-b688-b552a27a92ee
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