Publication detail
Instability of the swirling flows with/without cavitation
RUDOLF, P. POCHYLÝ, F. ČERMÁK, L. ŠTEFAN, D.
Czech title
Nestabilita vírového proudění s/bez kavitace
English title
Instability of the swirling flows with/without cavitation
Type
abstract
Language
en
Original abstract
Swirling flows are very susceptible to instabilities. Very often they are present in draft tubes of hydraulic turbines as so called vortex ropes resulting from spiral vortex breakdown. Moreover the situation can be complicated by cavitation within the core of the vortex. Paper presents various approaches, which were applied to enhance understanding of this problem. Numerical approach to study the linear stability including influence of cavitation is proposed and extensive nonlinear CFD simulations are described.
Czech abstract
Vírová proudění jsou velmi náchylná k nestabilitám. Nestability se v sacích troubách vodních turbín velmi často prezentují jako vírový cop. Jádro vírového copu je často vyplněno sytou párou (kavitací). Článek ukazuje různé přístupy ke studiu tohoto problému, především postupy založené na sledování stability linearizovaného systému i plně nelineární simulace založené na CFD.
English abstract
Swirling flows are very susceptible to instabilities. Very often they are present in draft tubes of hydraulic turbines as so called vortex ropes resulting from spiral vortex breakdown. Moreover the situation can be complicated by cavitation within the core of the vortex. Paper presents various approaches, which were applied to enhance understanding of this problem. Numerical approach to study the linear stability including influence of cavitation is proposed and extensive nonlinear CFD simulations are described.
Keywords in Czech
vírové proudění, kavitace, stabilita, rozpad víru
Keywords in English
swirling flow, cavitation, stability, vortex breakdown
Released
14.05.2012
Publisher
Czech Society for Mechanics
Location
Praha
ISBN
978-80-86246-39-0
Book
Book of Extended Abstracts
Edition number
1
Pages from–to
1123–1124
Pages count
2