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Ukončeno v akademickém roce 2020/2021

Compressors, Fans and Pumps

Type of study Follow-up Master
Language of instruction Czech
Code 361-0507/03
Abbreviation KVC
Course title Compressors, Fans and Pumps
Credits 5
Coordinating department Department of Power Engineering
Course coordinator doc. Ing. Kamil Kolarčík, CSc.

Osnova předmětu

1 Introduction, repeating thermodynamics and hydromechanics.
2 Compressors ideal jet theory, diagram, description of, simplistic arguments.
3 Flow of gases and vapors through nozzles, reheat factor, calculate the main dimensions of nozzles, the critical value, the effect of backpressure. Theory
4 Real jet compressors, boundary layer theory.
5 The ideal degree of radial compressors, description, energy transformation, Euler's equation.
6 Actual degree of radial compressor rotor blade shapes and their influence on the construction of machines, efficiency, pumping, with a diagram, the energy characteristics.
7 Axial vane compressors, basic characteristics, methods of solution, flow angles, the forces acting on the profile.
8 Ideal stage axial compressor, transition energies, Euler's equation, energy characteristics, velocity triangles.
9 The actual stage axial compressor, losses in energy transformation efficiency with the diagram, the energy characteristics.
10 Fans: axial shift with the degree R + S VS + R, counter-rotating rotors, radial, diagonal
11 Practical operation of compressor stations, measurement, humidity
12 Pumps: Theory. Geodetic height, head, manometric height, limit height of the suction pump. Transformation of energy.
13 Pumps: process measurement, the energy characteristics. Parallel and serial dynamic collaboration tools, working point. Control Performance.
14 Parallel and serial cooperation dynamic tool grinder and sharpener, operating point. Capacity control.

Povinná literatura

BLOCH, P. Heinz. A Practical Guide to Compressor Technology – Second Edition. New Jersey: John Wiley & Sons, 2006, 555 p. ISBN: 978-0-471-72793-4 .
BORREMANS, Marc. Pumps and Compressors. 1. Chichester, West Sussex: John Wiley And Sons, 2019, 512 s. ISBN 978-1-119-53414-3 .
J. MORAN, Michael, Howard N. SHAPIRO, Daisie D. BOETTNER a Margaret B. BAILEY. Fundamentals of Engineering Thermodynamics, 9th Edition. 9th Edition. New York: John Wiley, 2018. ISBN 978-1-119-39138-8 .

Doporučená literatura

LOGAN, E.Jr.: Handbook of Turbomachinery (Mechanical Engineering, No. 158) (2 ed.). New York: Marcel Dekker, 2003. ISBN 0-8247-0995-0 .
KHAN, A., A.; GORLA, R.,S.R. Turbomachinery: Design and Theory. New York: Marcel Dekker, 2003. ISBN 0-8247-0980-2 .
GIAMPAOLO, T. Compressor Handbook: Principles and Practice. Lilburn: The Fairmont Press, 2010, 361 p. ISBN: 0-88173-616-3 
GÜLICH, J. F. Centrifugal Pumps. Berlin, Heidelberg: Springer, 2008, 923 p. ISBN: 978-3-540-73694-3 .
BRENNEN, E. Christopher. Hydrodynamics of Pumps. Oxford: Oxford University Press, 1994, 293 p. ISBN: 0-19-856442-2 .
WAHREN, Uno. Practical Introduction to Pumping Technology. Houston: Elsevier Science & Technology Books, 1997, 208 p. ISBN: 0884156869 .