DocumentCode :
3593139
Title :
Numerical study on flow structures of high Reynolds number submerged jet in an axis-symmetric cavity
Author :
Wang, Y.C. ; Tan, L. ; Cao, S.L. ; Gao, C.C.
Author_Institution :
Coll. of Water Resources & Archit. Eng., Northwest A & F Univ., Yangling, China
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
Large eddy simulation (LES) combined with SchnerrSauer (S-S) cavitation model were employed to study three-dimensional flow structure of submerged jet with high Reynolds number in an axis-symmetric cavity. The Reynolds number of working jet is Re = 2 × 105 and cavitation number is σ = 0.59 in measuring point of experiment. The computational result shows good agreement with experimental results. Compared with free jet flow structure, the confined jet structures shows defection, and the mixing layer isn´t linear diffusion due to effect of impinging edge. The largest velocity fluctuations in different directions occur in vicinity of jet half width line, as well as the x - y Reynolds shear stress. The velocity distributions of different lines show Gauss distribution in diffused section while center line (the largest velocity line in x direction) shift to y > 0 direction. The numbers of vortex on y - z planes in shear layer vary with stream wise length, and the largest vortex structure appears at the domain of x/d1 = 5 - 7 as shown in instantaneous streamlines figures. This indicates that the flow in such domain is the most complicated, and the mixing effect is the strongest.
Keywords :
Gaussian distribution; cavitation; flow simulation; jets; numerical analysis; shear turbulence; vortices; Gauss distribution; LES; Reynolds shear stress; Schnerr- Sauer cavitation model; axis symmetric cavity; free jet flow structure; high Reynolds number; large eddy simulation; mixing effect; submerged jet; velocity fluctuations; vortex; Axis-Symmetric Cavity; Confined Jet; Flow Structure; Large Eddy Simulation; Submerged Jet;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Fluid Machinery and Fluid Engineering, 2014 ISFMFE - 6th International Symposium on
Print_ISBN :
978-1-84919-907-0
Type :
conf
DOI :
10.1049/cp.2014.1211
Filename :
7124132
Link To Document :
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