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Designing and updating the flow part of axial and radial-axial turbines through the use of methods of mathematical modeling

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Warianty tytułu
Konferencja
International Symposium on Compressor & Turbine Flow Systems Theory & Application Areas "SYMKOM" (11 ; 20-23.10.2014 ; Łódź, Polska)
Języki publikacji
EN
Abstrakty
EN
The paper describes an algorithm for the designing of axial and radial-axial type turbines. The algorithm is based on using mathematical models of various levels of difficulty – from 1D to 3D. Geometry description of flow parts is performed using analytical methods of profiling using a limited number of parameter values. 3D turbulent flow model is realized in the program complex IPMFlow, developed based on the earlier codes FlowER and FlowER-U. The examples of developed or modernized turbines for different purposes power machinesare presented. They are an expansion turbine, ORC turbine, cogeneration medium-pressure turbine.
Twórcy
autor
  • Department of Hydroaeromechanics of Power Machines A.N. Podgorny Institute of Mechanical Engineering Problems, NASU Kharkov, Ukraine
Bibliografia
  • [1] Cumpsty N.A.: Compressor aerodynamics [Text] / Krieger Pub Co., 1989.
  • [2] Scientific contribution to the creation of aircraft engines. In two books. Book. 2 / Under the general scientific. ed. V.A. Skibina and V.I. Solonina, M.: Mechanical Engineering, 2000, 616 (in Russian).
  • [3] Troyanovskiy B.M.: Improvement of steam turbines flow parts // Fittings, 1996, № 1, pp. 10-17.
  • [4] Copyright. certificate of. Complex three-dimensional calculation programs of gas flows in turbomachines bahatovintsevyh «FlowER» [Text] / S.V. Ershov, A.V. Rusanov. – State Agency of Ukraine on Copyright and Related Rights, the PA № 77; 19/02/96, 1 p (in Ukrainian).
  • [5] Rusanov A.V.: Mathematical modeling of unsteady gasdynamic processes in the setting of turbomachines [Text] / A.V. Rusanov, S.V. Ershov, Kharkov: IPMash NAS of Ukraine, 2008, 275p (in Russian).
  • [6] Boiko A.V.: Fundamentals of the theory of optimal design of axial turbomachines flow part [Text] / A.V. Boiko, Y.N. Govorushchenko, Kharkov: High School, 1989, 217 p. (in Russian).
  • [7] Bilan A.V.: Automated design of steam turbine blades [Text] / A.V. Bilan, V.N. Bilan // Compressor and power engineering, 2006, № 3 (5), pp. 66-68 (in Russian).
  • [8] Lampart P.: Direct Constrained Comptational Fluid Dynamics Based Optimization of Three-Dimensional Blading for the Exit Stage of a Large Power Steam Turbine/ P. Lampart, S. Yershov // Transactions of the ASME. Journal Engineering for Gas Turbines and Power, 2003, 125, No. 1, pp. 385-390.
  • [9] Genetic Algorithms in Search, Optimization, and Machine Learning David E. Goldberg, University of Alabama ISBN-10: 0201157675, ISBN-13: 9780201157673 ©1989 Addison-Wesley Professional Cloth, 432 p.
  • [10] 2008 “Optimization and Computational Fluid Dynamics”. Springer-Verlag.
  • [11] IAPWS, Revised Release on the IAPWS Formulation 1995 for the Thermodynamic Properties of Ordinary Water Substance for General and Scientific Use. – Available from: http://www.iapws.org
  • [12] Rusanov A.V.: Interpolation-analytical method considering the real properties of gases and liquids // East European Journal of advanced technology, 2013, № 3/10 (63), pp. 53-57 (in Russian).
  • [13] Lampart P.: Validation of turbomachinery flow solver on turbomachinery test cases [Text] / P. Lampart, S. Yershov, A. Rusanov // International conference SYMKOM'02: Compressor & turbine stage flow path theory, experiment & user verification, Cieplne Maszyny Przeplywowe. Turbomachinery, Politechnika Lodzka, Lodz, Poland, 2002, № 122, pp. 63-70.
  • [14] Homylev S.A.: Numerical study of flow turbine airfoil cascades: Part 1 – verification of the calculation method [Text] / S.A. Homylev, S.B. Resnick, S.V. Ershov // Energy and thermal engineering processes and equipment, 2008, № 6, pp. 23-31 (in Russian).
  • [15] Rusanov A.V.: Method of analytical profiling blade rows of axial turbines flow parts [Text] / A.V. Rusanov, N.V. Pascenco A.I. Kosyanova // East European Journal of advanced technology, 2009, № 2/7 (38), pp. 32-37 (in Russian).
  • [16] Rusanov A.V.: Using modern computer technology to create high-performance flow parts radial-axial type // Compressor and power engineering, 2013, № 2 (32), pp. 4-9 (in Russian).
  • [17] Rusanov A.V. Method of designing high-performance turbo-expander units flow parts / A.V. Rusanov S.V. Moiseev, P.N. Suhorebry, A.I. Kosyanova, R.A. Rusanov // Aerospace and Technology, 2012, № 8 (95), pp. 67-72 (in Russian).
  • [18] Rusanov A.: Elaboration of the flow system for a cogeneration ORC turbine / A. Rusanov, P. Lampart, R. Rusanov, S. Bykuc // Proc 12th Conf on Power System Engineering, Thermodynamics & Fluid Flow – ES 2013, Pilzen, Czech Republic, 13-14 June 2013, Publisher: University of West Bohemia, 2013,10 p.
  • [19] Rusanov A.V.: Development of the CMP flow part steam turbine T-125/150-12,8 based on the use of modern computer technology [Text] / A.V. Rusanov, A.L. Shubenko, A.Y. Kultyshev etc. // Vestnik NTU ˝KhPI˝. Series: Energy and thermal engineering processes and installations, Kharkov, 2014, № 11 (1054), pp. 16-29 (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
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