VORTEX RINGS IMPINGING ON WALLS - AXISYMMETRICAL AND 3-DIMENSIONAL SIMULATIONS

被引:146
作者
ORLANDI, P
VERZICCO, R
机构
[1] Universita di Roma “La Saoienza” Diopartimento di Meccanica e Aeronautica, Roma
关键词
D O I
10.1017/S0022112093002903
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Accurate numerical simulations of vortex rings impinging on flat boundaries revealed the same features observed in experiments. The results for the impact with a free-slip wall compared very well with previous numerical simulations that used spectral methods, and were also in qualitative agreement with experiments. The present simulation is mainly devoted to studying the more realistic case of rings interacting with a no-slip wall, experimentally studied by Walker et al. (1987). All the Reynolds numbers studied showed a very good agreement between experiments and simulations, and, at Re(v) > 1000 the ejection of a new ring from the wall was seen. Axisymmetric simulations demonstrated that vortex pairing is the physical mechanism producing the ejection of the new ring. Three-dimensional simulations were also performed to investigate the effects of azimuthal instabilities. These simulations have confirmed that high-wavenumber instabilities originate in the compression phase of the secondary ring within the primary one. The large instability of the secondary ring has been explained by analysis of the rate-of-strain tensor and vorticity alignment. The differences between passive scalars and the vorticity field have been also investigated.
引用
收藏
页码:615 / 646
页数:32
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