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A. Sokolovs, L. Grigans, E. Kamolins and J. Voitkans

References 1. Kana, C. L., Thamodharan, M., & Wolf, A. (2001). System management of a windenergy converter. IEEE Transactions on Power Electronics, 16(3), 375-381. doi:10.1109/63.923770 2. Lu, H.-C., & Chang-Chien, L.-R. (2010). Use of wind turbine emulator for the WECS development. In: International Power Electronics Conference (IPEC), (pp. 3188-3195). 3. Monfared, M., Madadi Kojabadi, H., & Rastegar, H. (2008). Static and dynamic wind turbine simulator using a converter controlled dc motor. Renewable Energy

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Janusz Kotowicz, Marcin Job, Mateusz Brzęczek, Krzysztof Nawrat and Janusz Mędrych

economic parameters on the optimal values of the design variables of a combined cycle plant. Energy 35(2010), 2, 911-919. [6] Kotowicz J., Job M.: Thermodynamic and economic analysis of a gas turbine combined cycle plant with oxy-combustion. Arch. Thermodyn. 34(2013), 4, 215-233. [7] Kotowicz J., Bartela Ł.: Analysis of operation of the gas turbine in a poligeneration combined cycle. Arch. Thermodyn. 34(2013), 4, 137-159. [8] Heavy Duty Gas Turbines & Combined Cycle. General Electric. http://site.geenergy.com/prod_serv/products/gas_turbines

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Zygfryd Domachowski and Marek Dzida

REFERENCES 1. Meher – Homji, C. B., Mee, T. R.: Gas Turbine Power Augmentation by Fogging of Inlet Air . Proceedings of the 28th Turbomachinery Symposium, Turbomachinery Laboratory, Texas A&M University, September 1999, Houston, USA. 2. Meher – Homji, C. B., Mee, T. R.: Intel Fogging of Gas Turbine Engines, part B: Practical Considerations, Control and O&M Aspects . Proceedings of ASME Turbo Expo 2000, May 8-11, 2000, Munich, Germany, ASME Paper 2000 – GT-308. 3. Chaker, M.A., Meher – Homji, C. B.: Inlet Fogging of Gas Turbine Engines

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Henryk Borowczyk, Józef Błachnio and Jarosław Spychała

6. Bibliography [1] Abbas, M. and G.J. Vachtsevanos. A system-level approach to fault progression analysis in complex engineering systems . in Annual Conference of the Prognostics and Health Management Society, PHM 2009 . 2009. [2] Bano, N., A. Fahim, and M. Nganbe. Fatigue crack initiation life prediction of IN738 using artificial neural network . 2010. [3] Blachnio, J. and M. Bogdan, A non-destructive method to assess condition of gas turbine blades, based on the analysis of blade-surface images. Russian Journal of Nondestructive Testing

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Marek Dzida and Wojciech Olszewski

References Advances in Gas Turbine Technology. Chapter (Dzida M.) Possible Efficiency Increasing of Ship Propulsion and Marine Power Plant with the System Combined of Marine Diesel Engine, Gas Turbine and Steam Turbine. ISBN 978-953-307-611-9. Book edited by: Dr. Ernesto Benini. INTECH, 2011 Dzida, M.: On the possible increasing of efficiency of ship power plant with the system combined of marine diesel engine, gas turbine and steam turbine at the main engine - steam turbine mode of cooperation. Polish

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Marek Dzida, Jerzy Girtler and Sebastian Dzida

References A new turbocharger generation. ABB Turbo Systems Ltd. Publication No. CH-Z 2035 98E. Dzida M.: On the possible increasing of efficiency of ship power plant with the system combined of a marine diesel engine, gas turbine and steam turbine, at the main engine-steam turbine mode of cooperation. PMR No 1(59), Vol. 16, 2009 Dzida M., Mucharski J.: Possible ways of increasing the efficiency of the ship power plant with the piston internal combustion engine - gas turbine

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Koudelka Libor

References [1] https://en.wikipedia.org/wiki/Viktor_Kaplan [2] Original technical documentation of Prokopa & sons comp. [3] Nechleba, M. Hydraulic Turbines, Their Design and Equipment, Constable & Co Ltd. , 1957, 70 - 71 [4] Energy Loss and Efficiency of Power Transmission Belts, Advanced Engineering Research, Carlisle Inc. , pp. 8, Fig. 4 [5] IEC 60193, Hydraulic Turbines, Storage Pumps and Pump-Turbines - Model Acceptance Tests , pp. 30 [6] IEC 60041, Field

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Marek Dzida and Janusz Mucharski

References A new turbocharger generation. ABB Turbo Systems Ltd. Publication No. CH-Z 2035 98E. Description of Marine GenSet- Type L28/32H. MAN B&W Diesel A/S. November 1993. Dzida M.: On the possible increasing of efficiency of ship power plant with the system combined of pi-ston combustion engine, gas turbine and steam turbine, at the main engine - steam turbine mode of cooperation. Polish Maritime Research No 1(59), Vol. 16, 2009 Kehlhofer R

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Jerzy Świrydczuk

References Goldstein R.J., Spores R.A.: Turbulent transport on the endwall in the region between adjacent turbine blades , Trans. ASME, J. Heat Transfer , vol. 110, 1988 Doerffer P., Amecke J.: Secondary flow control and stream-wise vortices formation , ASME Paper. 94-GT-376, 1994 Wang H.P., Olson S.J., Goldstein R.J., Eckert E.R.G.: Flow visualization of a linear turbine cascade of high performance turbine blades , J. Fluid Mech. , vol. 134, 1997

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Mariusz Żółtowski, Bogdan Żółtowski and Leonel Castaneda

References 1. Egusquiza E., Nascimento L.P., Valero, C. Jou, E. (1994). El diagnostico de dańos en grupos hidroelectricos mediante el analisis de vibraciones . Revista Ing. del agua Vol 1 Num 3. 2. Gagnon J.M., Payette F.A. and Deschenes C. (2007). Numerical Simulation of a Rotor-Stator Unsteady Interaction in a Propeller Turbine . CFD Society of Canada, Toronto. 3. Guedes A., Kueny J.L., Ciocan G. and Avellan F. (2002). Unsteady rotor-stator analysis of a hydraulic pump-turbine - CFD and experimental