Details
Title
Development of flow and efficiency characteristics of an axial compressor with an analytical method including cooling air extraction and variable inlet guide vane angleJournal title
Archives of ThermodynamicsYearbook
2021Volume
vol. 42Issue
No 4Affiliation
Trawiński, Paweł : Institute of Heat Engineering, Warsaw University of Technology, Nowowiejska 21/25, 00-665, Warsaw, PolandAuthors
Keywords
Axial compressor ; Compressor characteristics ; Compressor maps ; IGV ; Bleed airDivisions of PAS
Nauki TechniczneCoverage
17-46Publisher
The Committee of Thermodynamics and Combustion of the Polish Academy of Sciences and The Institute of Fluid-Flow Machinery Polish Academy of SciencesBibliography
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[3] Kehlhofer R., Rukes B., Hennemann F., Stirnimann F.: Combined-Cycle Gas and Steam Turbine Power Plants. PennWell, Tusla 2009.
[4] Boyce M.P.: Gas Turbine Engineering Handbook. Butterworth-Heinemann, Houston 2011.
[5] Kotowicz J.: The current state and prospects of development of gas-steam systems. Arch. Energ. 42(2012), 1 23–28, (in Polish).
[6] Horlock J.H.: Advanced Gas Turbine Cycles. Pergamon, Kidlington 2013.
[7] Tsoutsanis E., Li Y. G., Pilidis P., Newby M.: Part-load performance of gas turbines: Part I: – A novel compr/essor map generation approach suitable for adaptive simulation. In: Proc. ASME Gas Turbine India Conf., Mumbai, 1 Dec. 2012, GTINDIA2012-9580, 733–742.
[8] Tsoutsanis E., Meskin N., Benammar M., Khashayar K.: A component map tuning method for performance prediction and diagnostics of gas turbine compressors. Appl. Energ. 135(2014), 572–585.
[9] Giampaolo A.J.: Gas Turbine Handbook: Principles and Practices. Fairmont CRC / Taylor&Francis, Lilburn Boca Raton 2006.
[10] Eckert B.: Axial and Radial Compressors. PWT, Warszawa 1959 (in Polish).
[11] Saravanamuttoo H.I.H.: Gas Turbine Theory. Pearson/Prentice Hall, Harlow 2009.
[12] Kalman D.: The most marvelous theorem in mathematics. J. Online Math. Appl. 8(2008).
[13] Halir R., Flusser J.: Numerically stable direct least squares fitting of ellipses. In: Proc. 6th Int. Conf. Central Europe on Computer Graphics and Visualization, Plzen, 1998, 125–132
[14] https://www.solver.com/excel-solver-grg-nonlinear-solving-method-stopping-conditions (accessed 27 May 2021).
[15] Perycz S.: Steam and Gas Turbines. Ossolineum, Wydawn. IMP PAN, Wrocław 1992 (in Polish).
[16] Trawinski P.: Development of real gas model operating in gas turbine system in Python programming environment. Arch. Thermodyn. 41(2020), 4, 23–61.
Date
2022.01.17Type
ArticleIdentifier
DOI: 10.24425/ather.2021.138121Editorial Board
International Advisory BoardJ. Bataille, Ecole Central de Lyon, Ecully, France
A. Bejan, Duke University, Durham, USA
W. Blasiak, Royal Institute of Technology, Stockholm, Sweden
G. P. Celata, ENEA, Rome, Italy
L.M. Cheng, Zhejiang University, Hangzhou, China
M. Colaco, Federal University of Rio de Janeiro, Brazil
J. M. Delhaye, CEA, Grenoble, France
M. Giot, Université Catholique de Louvain, Belgium
K. Hooman, University of Queensland, Australia
D. Jackson, University of Manchester, UK
D.F. Li, Kunming University of Science and Technology, Kunming, China
K. Kuwagi, Okayama University of Science, Japan
J. P. Meyer, University of Pretoria, South Africa
S. Michaelides, Texas Christian University, Fort Worth Texas, USA
M. Moran, Ohio State University, Columbus, USA
W. Muschik, Technische Universität Berlin, Germany
I. Müller, Technische Universität Berlin, Germany
H. Nakayama, Japanese Atomic Energy Agency, Japan
S. Nizetic, University of Split, Croatia
H. Orlande, Federal University of Rio de Janeiro, Brazil
M. Podowski, Rensselaer Polytechnic Institute, Troy, USA
A. Rusanov, Institute for Mechanical Engineering Problems NAS, Kharkiv, Ukraine
M. R. von Spakovsky, Virginia Polytechnic Institute and State University, Blacksburg, USA
A. Vallati, Sapienza University of Rome, Italy
H.R. Yang, Tsinghua University, Beijing, China