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Numerical Investigation of an Active Jet Control Method for Hypersonic Inlet Restart

Numerical Investigation of an Active Jet Control Method for Hypersonic Inlet Restart

作     者:JIN Yichao YAO Wei 靳一超;姚卫

作者机构:Institute of Applied Physics and Computational MathematicsBeijing 100094P.R.China Key Laboratory of High-Temperature Gas DynamicsInstitute of MechanicsChinese Academy of SciencesBeijing 100190P.R.China School of Engineering ScienceUniversity of Chinese Academy of SciencesBeijing 100049P.R.China 

基  金:supported by the National Key Research and Development Program of China (No.2021YFA0719204) the National Natural Science Foundation of China (No.12272387) 

出 版 物:《Transactions of Nanjing University of Aeronautics and Astronautics》 (南京航空航天大学学报(英文版))

年 卷 期:2022年第39卷第6期

页      码:651-662页

摘      要:A flow control method based on an active jet is developed to restart hypersonic inlets. The dynamic restarting process is numerically reproduced by unsteady Reynolds averaged Navier-Stokes(RANS) modeling to verify the effectiveness and reveal the influence of jet conditions. The active jet improves the inlet unstart status by drawing the high-pressure separation bubble from the internal compression duct and performing a full expansion to alleviate the adverse pressure gradient. Moreover, the favorable pressure gradient in the inlet caused by jet expansion allows for a successful restart after turning off the jet. The influence of the jet momentum ratio is then analyzed to guide the design of the active jet control method and choose the proper momentum ratios. A low jet momentum does not eliminate the high-pressure separation bubble, whereas an excessive jet momentum causes severe momentum loss due to the induced shock. The general rule in restarting the inlet using an active jet is to allow a full jet expansion downstream of the jet slot while avoiding excessive momentum loss upstream and preventing the thick low-speed layer.

主 题 词:hypersonic inlet unstart restart active jet flow control 

学科分类:080704[080704] 080103[080103] 08[工学] 0807[工学-电子信息类] 0801[工学-力学类] 

核心收录:

D O I:10.16356/j.1005‑1120.2022.06.002

馆 藏 号:203117913...

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