TY - JOUR
T1 - Numerical study of jet impingement heat transfer inside aero-engine inlet strut with film-heating anti-icing system
AU - Lu, Yi
AU - Ke, Peng
AU - Li, Fang yong
AU - Tang, Xing
AU - Yang, Chunxin
N1 - Publisher Copyright:
© 2018 International Heat Transfer Conference. All rights reserved.
PY - 2018
Y1 - 2018
N2 - Film heating anti-icing system that applied on aero-engine inlet strut manufactured with carbon fiber reinforced resin composite was investigated. Firstly, Numerical simulation using computational fluid dynamics was conducted, where the independence of grid was checked and Realizable k-ε turbulence model with Enhanced wall treatment was selected. Secondly, the fundamental heat transfer characteristics of the impingement heat transfer process were explored on the smallest symmetry unit of the aero-engine inlet strut. Results indicated that the existence of the film slots could significantly enhance the impingement heat transfer and both interior impingement heat transfer and exterior film heating could contribute to external surface heating. Finally, the effects of film slots structure parameters, such as slot width and slot configuration were comprehensively investigated. Results showed that, 1) The increase of the film slot width could enhance the impingement heat transfer between the hot air and the inside wall of leading edge because it could narrow the stagnation area. 2) Compared with the whole slot structure, the staggered slot configuration was conducive to create more turbulent flow inside the cavity to enhance the impingement heat transfer. This research will be helpful to understand the jet impingement heat transfer process inside aero-engine inlet strut with film-heating anti-icing system.
AB - Film heating anti-icing system that applied on aero-engine inlet strut manufactured with carbon fiber reinforced resin composite was investigated. Firstly, Numerical simulation using computational fluid dynamics was conducted, where the independence of grid was checked and Realizable k-ε turbulence model with Enhanced wall treatment was selected. Secondly, the fundamental heat transfer characteristics of the impingement heat transfer process were explored on the smallest symmetry unit of the aero-engine inlet strut. Results indicated that the existence of the film slots could significantly enhance the impingement heat transfer and both interior impingement heat transfer and exterior film heating could contribute to external surface heating. Finally, the effects of film slots structure parameters, such as slot width and slot configuration were comprehensively investigated. Results showed that, 1) The increase of the film slot width could enhance the impingement heat transfer between the hot air and the inside wall of leading edge because it could narrow the stagnation area. 2) Compared with the whole slot structure, the staggered slot configuration was conducive to create more turbulent flow inside the cavity to enhance the impingement heat transfer. This research will be helpful to understand the jet impingement heat transfer process inside aero-engine inlet strut with film-heating anti-icing system.
KW - Aero-engine inlet strut
KW - Anti-icing system
KW - Convection
KW - Film slot
KW - Heat transfer enhancement
UR - https://www.scopus.com/pages/publications/85067937883
U2 - 10.1615/ihtc16.hte.023911
DO - 10.1615/ihtc16.hte.023911
M3 - 会议文章
AN - SCOPUS:85067937883
SN - 2377-424X
VL - 2018-August
SP - 5357
EP - 5364
JO - International Heat Transfer Conference
JF - International Heat Transfer Conference
T2 - 16th International Heat Transfer Conference, IHTC 2018
Y2 - 10 August 2018 through 15 August 2018
ER -