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Cavitation Instabilities and Rotordynamic Effects in Turbopumps and Hydroturbines


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Produktinformationen
cover
cover
Artikel-Nr.:
     5667A-9783319842233
Hersteller:
     Springer Verlag
Herst.-Nr.:
     9783319842233
EAN/GTIN:
     9783319842233
Suchbegriffe:
Luft- und Raumfahrttechnik
Luft- und Raumfahrttechnik - englis...
allgemeine Technikbücher
allgemeine Technikbücher - englisch...
The book provides a detailed approach to the physics, fluid dynamics, modeling, experimentation and numerical simulation of cavitation phenomena, with special emphasis on cavitation-induced instabilities and their implications on the design and operation of high performance turbopumps and hydraulic turbines. The first part covers the fundamentals (nucleation, dynamics, thermodynamic effects, erosion) and forms of cavitation (attached cavitation, cloud cavitation, supercavitation, vortex cavitation) relevant to hydraulic turbomachinery, illustrates modern experimental techniques for the characterization, visualization and analysis of cavitating flows, and introduces the main aspects of the hydrodynamic design and performance of axial inducers, centrifugal turbopumps and hydo-turbines. The second part focuses on the theoretical modeling, experimental analysis, and practical control of cavitation-induced fluid-dynamic and rotordynamic instabilities of hydraulic turbomachinery, with special emphasis on cavitating turbopumps (cavitation surge, rotating cavitation, higher order cavitation surge, rotordynamic whirl forces). Finally, the third part of the book illustrates the alternative approaches for the simulation of cavitating flows, with  emphasis on both modeling and numerical aspects. Examples of applications to the simulation of unsteady cavitation in internal flows through hydraulic machinery are illustrated in detail.
Weitere Informationen:
Author:
Luca d'Agostino; Maria Vittoria Salvetti
Verlag:
Springer International Publishing
Sprache:
eng
Weitere Suchbegriffe: luft- und raumfahrttechnik - englischsprachig, Cavitation in hydraulic turbomachinery, Cavitation-induced flow instabilities, Cavitation-induced rotordynamic forces, Fluid dynamic instabilities in, Hydraulic turbomachinery design and performance, Hydraulic turbomachinery experimentation and simulation, Performance turbopumps and hydroturbines, high-performance turbopumps and hydroturbines, fluid- and aerodynamics
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