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Calculating Study of the Turbine at Last Stage Flow Field in the Small Volume Flow Condition

nitride titanium nitride composite coating preparation and basic research. Central South University. 5. W. L. Xu, J. D. Wang, D.R. Chen, F. B. Liu, 2010.Last stage of turbine blade erosion bench design.Journal of Tsinghua UniversityNatural Sciences, 50(8), 1201-1204. 6. J. S. Rao, 1998. Application of fracture mechanics in the failure analysis of a last stage steam turbine blade. Mechanism and Machine Theory. 33, 599-609. 7. Z. B. Zhang, Y. J. Tian, L. H. Cao, Y. Sun, 2013. Numerical analysis of flow field within the

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Vertical Distribution of Nearshore Flow Velocity

References 1. Fang Guo-hong, Takashi Ichiye. On the vertical structure of tidal currents in a homogeneous sea [J]. Geophysical Journal of the Royal Astronomical Society, 1983, 73 (1): 65-82. 2. He Bing-ju, Hao Jia-ling. Fractal Study of Vertical Flow Velocity Distribution of Yangtze River Estuary [J]. Water Resources and Power, 2015, 33(12):37-39+31. 3. Kumbhakar M, Ghoshal K. Two dimensional velocity distribution in open channels using Renyi entropy[J]. Physica A: Statistical Mechanics and its Applications

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Magnetohydrodynamic Flow of Viscous Fluid in a Slot between Fixed Surfaces of Revolution

REFERENCES 1. Batażin A.B.: Ljubimow G.A., Regirer C.A., Magnito-gidrodinamiczeskije teczienia w kanałach (in Russian), Nauka, CCCP, 1979, 2. Batchelor G. K.: An Introduction to Fluid Dynamics , Cambridge Press, Cambridge, 1967, 3. Bujurke N. M., Kudenatti R.B.: MHD lubrication flow between rough rectangular plates , Fluid Dynamic Research, 2007, 39, p. 4, 4. Cowling T. G.: Magnetohydrodynamics , Interscience, New York, 1957, 5. Chang C.L., Li Y.M., Huang H.H., Leong J.C.: Analysis of fluid film lubrication of an MHD journal

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Studies of Resistances of Natural Liquid Flow in Helical and Curved Pipes

Gidravlicheskim Soprotivlenijam (Izdanie 3-e, Mashinostroenie, Moscow, 1992). 10. B.S.V.S.R. Krishna, “Prediction of Pressure Drop in Helical Coil with Single Phase Flow of Non-Newtonian Fluid,” International Journal of Applied Research in Mechanical Engineering, Vol. 2, Iss. 1 (2012). 11. S. Stryczek, Hydrostatic Drive [in Polish] (WNT, Warsaw, 2005). 12. T. Takami, K. Sudou, “Flow through Curved Pipe with Elliptic Section,” Bulletin of JSME, Vol. 27. № 228. pp. 1176-1181 (1984).

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The Prediction of Hull Gesture and Flow Around Ship Based on Taylor Expansion Boundary Element Method

BIBLIOGRAPHY 1. Chen J.K., Duan W.Y., Zhao B.B., Ma Q.W. : Time domain hybrid TEBEM for 3D hydrodynamics of ship with large flare at forward speed. The 32nd International Workshop on Water Waves and Floating Bodies, Dalian, China,, 2017, pp. 23-26. 2. Dai, Y. : Potential flow theory of ship motions in waves . National Defense Industry Publication, Beijing, , 2008. 11-33. 3. Dawson C.W.: A practical computer method for solving ship-wave problems. In: Proceedings of Second International Conference on Numerical Ship Hydrodynamics , pp. 30

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Drag force on a flat plate in cavitating flows

flows using a PDF model for phase change , ASME Fluids Engineering Division Summer Meeting, ASME Paper FEDSM97-3272, 1997. Kubota A., Kato H., Yamaguchi H.: A New Modeling of Cavitating Flows: A Numerical Study of Unsteady Cavitation on a Hydrofoil Section. J. Fluid Mech. 1992 Senocak I., Shyy W.: Evaluation of cavitation models for Navier-Stokes computations , Proceeding of FEDSM 02, ASME fluid engineering division summer meeting, Montreal, Canada, 2002 Von Karman T.: Accelerated flow

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Numerical Simulations of Linearly Stratified Flow Past Submerged Bodies

References 1. Wang, J., You, Y.X., Hu, T.Q.: The Characteristics of Internal Waves Generated by a Revolution Body in a Stratified Fluid with a Pycnocline. Acta Physica Sinica, 2012, 61(7), Pp. 074-701. 2. Ouchi, K.: Recent Trend and Advance of Synthetic Aperture Radar with Selected Topics. Remote Sensing, 2013, 5(2), Pp.716-807. 3. Spedding, G.R.: Wake Signature Detection. Annual Review of Fluid Mechanics, 2014, 46, Pp. 273-302. 4. Miles, J.W.H.: Lee Waves in a Stratified Flow. Part 2. Semi

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Calculation Method for Flow Boiling and Flow Condensation of R134a and R1234yf in Conventional and Small Diameter Channels

fin surfaces, Int. J. Refrigeration 33 (3), 2010, pp. 553-557. 9. Lu M-C., Tong J-R., W C-C.: Investigation of the twophase convective boiling of HFO-1234yf in a 3.9 mm diameter tube, Int. J. Heat and Mass Transfer, 65, 2013, pp. 545-551. 10. Del Col D., Bortolini S., Torresin D., Cavallini A.: Flow boiling of R1234yf in a 1 mm diameter channel, Int. J. of Refrigeration, 36, 2013, pp. 353-362. 11. Satioh S., Dang C., Nakamura Y., Hihara E.: Boiling heat transfer of HFO-1234yf flowing in a smooth smalldiameter

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Flow of Liquid in Flat Gaps of the Satellite Motor Working Mechanism

oil and emulsion HFA-E on flow characteristics in gaps of hydraulics satellite motors (in Polish). Hydraulika i Pneumatyka, No 5/2007 12. Śliwiński, P.; Balawender A. Research and describing of phenomena in new series of type satellite hydraulic motors with clearances compensation (in Polish). International-Scientific Technical Conference Hydraulic and Pneumatics 2005. Wroclaw 2005 13. Catalogue of products made by Harken:

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Ferromagnetic Flow of Viscous Fluid in a Slot between Fixed Surfaces of Revolution

References 1. Bednarek S.: Ferromagnetic fluids - materials with unusual properties and their applications, 2009, Foton, Institute of Physics, Jagiellonian University, spring 104 2. Buhler L.: Magnetohydrodynamic flow in ferromagnetic pipes, Forschungszentrum Karsruhe GmbH, 2002 3. Ezekiel F.D.: Ferrolubricants: 1975, New Application, Mechanical Engineering, 2 4. Huang W., Wang X.: Ferrofluids lubrication: a status report, 2015, Lubrication Science, 02 5. Lemarquand V. , Lemarquan

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