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Unsteady Numerical Investigation on Vortex Interaction between Rim Seal Purge Flow and Upstream Stator

Authors :
L. Zhou
Z. X. Wang
F. Yang
J. W. Shi
Source :
Journal of Applied Fluid Mechanics, Vol 15, Iss 2, Pp 465-474 (2022)
Publication Year :
2022
Publisher :
Isfahan University of Technology, 2022.

Abstract

To assess unsteady vortex interaction between rim seal purge flow and upstream stator, numerical ‎investigations were conducted under different purge flow rates. The vortex distributions for the stator and ‎cavity were investigated and the interaction processes near the cavity exit, in particular the vorticity ‎change resulting from the ingress and egress, were analyzed. Results show the intensity of hub passage ‎vortex (HPV) and hub trailing shedding vortex (HTSV) at stator exit is decreased as a consequence of ‎enhancing blockage effects caused by the egress flow. However, when the purge flow rate increases, ‎from stator exit to downstream of cavity exit, the reduction in the intensity of two vortices is weakened as ‎the extrusion of egress flow thins their vortex tubes. The vortex inside the cavity is generated as the ‎combined effect of relative rotation of cavity walls and non-uniform circumferential pressure mainly ‎imposed by upstream stator. The ingress leads the positive axial vorticity near the stator hub to ingest into ‎the cavity and eject into the main passage due to the blockage of purge flow. Furthermore, the interaction ‎between the ingress of the mainstream and purge flow produces local negative axial vorticity. The egress ‎flow carries negative axial vorticity mainly originated from the rotational cavity wall, and enters into the ‎main flow passage near the rotating hub, then locations of HPV and HTSV move to the mid-span slightly ‎with the extrusion of egress flow‎.

Details

Language :
English
ISSN :
17353572 and 17353645
Volume :
15
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Journal of Applied Fluid Mechanics
Publication Type :
Academic Journal
Accession number :
edsdoj.b0d07575b074cbb8ddf26d1677ae522
Document Type :
article
Full Text :
https://doi.org/10.47176/jafm.15.02.32674