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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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A Comparison of Simplified Two-dimensional Flow Models Exemplified by Water Flow in a Cavern

, jesli to czasopismo. Erturk E., Corke T. C., Gokcol C. (2005) Numerical Solutions of 2-D Steady Incompressible Driven Cavity Flow at High Reynolds Numbers, International Journal for Numerical Methods in Fluids , 48 (7), 747–774. Hahn M. (2013) Master’s thesis: Investigation of the boundary integral method for Stokes flow , University of Bayreuth, Bayreuth. Hirsch C. (1990) Numerical Computation of Internal and External Flows , volume 2: Computational Methods for Inviscid and Viscous Flows , Wiley, Hoboken. Issa R. I. (1985) Solution of

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Investigation on Application of Parshall Flume for Flow Measurement of Low-Flow Season in Korea

References Oh, B. D. (2004). Flow Analysis of Parshall Flume Using FLOW-3D Model. Ph. D. dissertation, Chungbuk Nation University, South Korea. International Standards Organization. (1992). Measurement of Liquid Flow in Open Channels - Parshall and SANIIRI Flumes. ISO 9826:1992. Peck, H. (1998). Submerged flows in Parshall flumes. In Proceeding, National Conference, Hydraulic Division of the American Society of Civil Engineers. ASCE, Colorado Springs, Colorado, 1155

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Water surface topology of supercritical junction flow

hydraulic jumps. Exp. Therm. Fluid Sci., 35, 6, 896–909. Christodoulou, G.C., 1993. Incipient hydraulic jump at channel junction. J. Hydraul. Eng., 119, 3, 409–423. Greated, C.A., 1968. Supercritical flow through junctions. La Houille Blanche, 23, 3, 693–695. Hager, W.H., 1989a. Supercritical Flow in Channel Junctions. J. Hydraul. Eng., 115, 5, 595–616. Hager, W.H., 1989b. Transitional Flow in Channel Junctions. J. Hydraul. Eng., 115, 2, 243–259. Hager, W.H., 2010. Wastewater Hydraulics: Theory and Practice. 2nd Edition. Springer Verlag

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Using thermal tracers to estimate flow velocities of shallow flows: laboratory and field experiments

References Abrahams, A.D., Atkinson, J.F., 1993. Relation between grain velocity and sediment concentration in overland flow. Water Resour. Res., 29, 3021-3028. Campbell, C.W., Latif, M.A., Foster, J.W., 1996. Application of thermography to Karst hydrology. J. Cave Karst Studies, 58, 163-167. Chung, J., Grigoropoulos, C.P., 2003. Infrared thermal velocimetry in MEMS-based fluidic devices. J. Microelectromech. S., 12, 365-372. de Lima, R.L.P., 2013. Development of a method using infrared

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Pneumatic Flow Characterization Using ECT Tomography Images Analysis

pixel based correlation with dual plane ECT. Chemical Engineering Journal 130(2), 87 – 99 [4] Filipowicz, S. F. and Rymarczyk, T. (2012). Measurement methods and image reconstruction in electrical impedance tomography. Electrical Review 88(6), 247 – 250 [5] Grudzien, K. (2017). Visualization system for largescale silo flow monitoring based on ect technique. IEEE Sensors Journal 17(24), 8242–8250 [6] Jaworski, A. J. and Dyakowski, T. (2001). Application of electrical capacitance tomography for measurement of gas-solids flow characteristics in a

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Channel Flow and Flood Estimate

References [1] J. A. Adegoke and G. B. Egbeyale, A computation of laminar flow in open channels and its application to sheet erosion, African Journal of Physical Science 4(1) (2011), 91-100. [2] Th. M. Boers, Rainwater Harvesting in Arid and Semi-arid Zones, Wageningen, The Netherlands, International Land Reclamation and Improvement Institute (ILRI), 1994, 132. [3] M. G. Bos, Discharge Measurement Structures, International Institute for Land Reclamation and Improvement, 2nd ed., Wageningen, 1978. [4] V. J. Boussinesq, Memoir on the

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Optimal TCSC placement for optimal power flow

References [1] ACHA, E.-FUERTE-ESQUIVEL, C. R.-AMBRIZ-P´EREZ, H.-ANGELES-CAMACHO, C. : FACTS, Modelling and Simulation in Power Networks, John Wiley & Sons Ltd, 2004. [2] ZHANG, S. P.-REHTANZ, C.-PAL, B. : Flexible AC Transmission Systems: Modelling and Control, Springer, Berlin, Heidelberg, New York, 2006. [3] DOMMEL, H. W.-TINNEY, W. F. : Optimal Power Flow Solutions, IEEE Trans. Power Apparatus and Systems PAS-87 No. 10 (1968), 1866-1876. [4] MARIA, G. A.-FINDLAY, J. A. : A Newton

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Quantitative Visualisation of Compressible Flows

, “Investigation of flow separation on a supercritical airfoil”, Journal of Aircraft, No. 26, pp. 1032-1039. [5] Adrian R.J., 1991, “Particle-imaging techniques for experimental fluid mechanics”, Annual Review of Fluid Mechanics, No. 23, pp. 261-304. [6] Wilert C.E., Gharib M., 1991, “Digital particle image velocimetry”, Experiments in Fluids, No. 10, pp. 181-193. [7] Parsad A.K., 2000, “Stereoscopic particle image velocimetry”, Experiments in Fluids, No. 29, pp. 103-116. [8] Scarano F., 2013, “Tomographic PIV: principles and practice”, Measurement

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Numerical Analysis of a Velocity Distribution of a Fluid Flow Inside a Reversing Chamber

References [1] Bartoszewicz, J., Analiza przepływu płynu przez komorę nawrotną , Wydawnictwo Politechniki Poznańskiej, Poznan 2012. [2] Ih, J.-G., Lee, B.-H., Theoretical prediction of the transmission loss of circular reversing chamber mufflers , Journal of Sound and Vibration, Vol. 112, Iss. 2, pp. 261-272, 1987. [3] Kłosowiak, R., Bartoszewicz, J., Urbaniak, R., Energy transformation in turbulent flow inside reversing chamber , Engineering Mechanics 2017, 23rd International Conference, pp. 466-469, Svratka 2017. [4] Popiolek, T. L

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