TY - JOUR
T1 - Influence of non-axisymmetric endwall profiling under incoming vortex on the corner separation of a diffusion cascade
AU - Zhang, Ting
AU - Li, Zhipeng
AU - Li, Huacong
AU - Liu, Bo
N1 - Publisher Copyright:
© 2025 Walter de Gruyter GmbH, Berlin/Boston.
PY - 2025
Y1 - 2025
N2 - To suppress corner separation, numerical simulation methods were used to investigate the effects of two passive flow control technology, non-axisymmetric endwall profiling (NAEP) and vortex generator (VG), on the aerodynamic performance of a diffusion cascade under design conditions. The results indicate that under the D1 circumferential installation position, the optimal combination of the vortex generator stagger of 15 and the NAEP of the blade suction surface concave structure in the passage is optimal. Under design conditions, the VG has a significant effect on suppressing the development of laminar separation bubbles in the middle of the chord, while NAEP has a worse effect. However, the NAEP scheme has a significant effect on the corner separation and reversed flow in the corner region, reducing the Cpt by 28.433%. The combination scheme combines the advantages of both control technologies. Under design conditions, the high dissipation region caused by laminar separation bubble migration on the suction surface of the blade is reduced, the separation in the corner region is further suppressed, the reversed region in the corner region is reduced, the diffusion capacity of the cascade is improved, and the Cpt of the combination scheme is reduced by 29.045%.
AB - To suppress corner separation, numerical simulation methods were used to investigate the effects of two passive flow control technology, non-axisymmetric endwall profiling (NAEP) and vortex generator (VG), on the aerodynamic performance of a diffusion cascade under design conditions. The results indicate that under the D1 circumferential installation position, the optimal combination of the vortex generator stagger of 15 and the NAEP of the blade suction surface concave structure in the passage is optimal. Under design conditions, the VG has a significant effect on suppressing the development of laminar separation bubbles in the middle of the chord, while NAEP has a worse effect. However, the NAEP scheme has a significant effect on the corner separation and reversed flow in the corner region, reducing the Cpt by 28.433%. The combination scheme combines the advantages of both control technologies. Under design conditions, the high dissipation region caused by laminar separation bubble migration on the suction surface of the blade is reduced, the separation in the corner region is further suppressed, the reversed region in the corner region is reduced, the diffusion capacity of the cascade is improved, and the Cpt of the combination scheme is reduced by 29.045%.
KW - corner separation
KW - diffusion cascade
KW - non-axisymmetric endwall profiling
KW - vortex generator
UR - http://www.scopus.com/inward/record.url?scp=105002605033&partnerID=8YFLogxK
U2 - 10.1515/tjj-2025-0020
DO - 10.1515/tjj-2025-0020
M3 - 文章
AN - SCOPUS:105002605033
SN - 0334-0082
JO - International Journal of Turbo and Jet Engines
JF - International Journal of Turbo and Jet Engines
ER -