Affiliation of Author(s):能源与动力学院
Journal:AEROSPACE SCIENCE AND TECHNOLOGY
Key Words:Turbine-based combined cycle Critical/subcritical inlet mode transition Continuous mode transition tests Shock oscillation
Abstract:The fluid dynamics and performance analyses of steady and continuous combined cycle inlet mode transition at critical/subcritical conditions were investigated through wind tunnel tests and three dimensional unsteady numerical simulations. When the inlet operated at critical condition, the terminal shock was unsteady and oscillated in the frequency between 40 Hz and 60 Hz around the shoulder of inlet and the downstream of cowl leading edge. In critical inlet mode transition the performance parameters of diffuser exit varied with positions of terminal shock. When the inlet operated at subcritical condition, terminal shock was steady at the upstream of cowl leading edge. The continuous mode transition test results reveal that the shock can be steady at subcritical condition. Considering the shock stability and performance parameters at the diffuser exit, subcritical inlet mode transition is better than critical condition for combined cycle inlet investigated in this paper. (C) 2017 Elsevier Masson SAS. All rights reserved.
ISSN No.:1270-9638
Translation or Not:no
Date of Publication:2017-10-01
Co-author:Liu Jun,gn
Correspondence Author:Yuan Hua Cheng
Date of Publication:2017-10-01
Liu Jun
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Gender:Male
Education Level:With Certificate of Graduation for Doctorate Study
Alma Mater:南京航空航天大学
Paper Publications
The flowfield and performance analyses of turbine-based combined cycle inlet mode transition at critical/subcritical conditions
Date of Publication:2017-10-01 Hits: