Model-Based Analysis of Flow Separation Control in a Curved Diffuser by a Vibration Wall

被引:3
作者
Lu, Weiyu [1 ]
Fu, Xin [2 ]
Wang, Jinchun [3 ]
Zou, Yuanchi [2 ]
机构
[1] Nanjing Tech Univ, Sch Phys & Math Sci, Nanjing 211816, Peoples R China
[2] Nanjing Univ Aeronaut & Astronaut, Coll Energy & Power Engn, Nanjing 210016, Peoples R China
[3] AECC Commercial Aircraft Engine Co Ltd, Res & Design Ctr, Shanghai 200241, Peoples R China
基金
中国国家自然科学基金;
关键词
unsteady flow control; flow separation; vibration wall; model-based analysis;
D O I
10.3390/en14061781
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Vibration wall control is an important active flow control technique studied by many researchers. Although current researches have shown that the control performance is greatly affected by the frequency and amplitude of the vibration wall, the mechanism hiding behind the phenomena is still not clear, due to the complex interaction between the vibration wall and flow separation. To reveal the control mechanism of vibration walls, we propose a simplified model to help us understand the interaction between the forced excitation (from the vibration wall) and self-excitation (from flow instability). The simplified model can explain vibration wall flow control behaviors obtained by numerical simulation, which show that the control performance will be optimized at a certain reduced vibration frequency or amplitude. Also, it is shown by the analysis of maximal Lyapunov exponents that the vibration wall is able to change the flow field from a disordered one into an ordered one. Consistent with these phenomena and bringing more physical insight, the simplified model implies that the tuned vibration frequency and amplitude will lock in the unsteady flow separation, promote momentum transfer from the main stream to the separation zone, and make the flow field more orderly and less chaotic, resulting in a reduction of flow loss.
引用
收藏
页数:16
相关论文
共 50 条
[31]   LUNA: A Model-Based Universal Analysis Framework for Large Language Models [J].
Song, Da ;
Xie, Xuan ;
Song, Jiayang ;
Zhu, Derui ;
Huang, Yuheng ;
Felix, Juefei-Xu ;
Ma, Lei .
IEEE TRANSACTIONS ON SOFTWARE ENGINEERING, 2024, 50 (07) :1921-1948
[32]   DeepStellar: Model-Based Quantitative Analysis of Stateful Deep Learning Systems [J].
Du, Xiaoning ;
Xie, Xiaofei ;
Li, Yi ;
Ma, Lei ;
Liu, Yang ;
Zhao, Jianjun .
ESEC/FSE'2019: PROCEEDINGS OF THE 2019 27TH ACM JOINT MEETING ON EUROPEAN SOFTWARE ENGINEERING CONFERENCE AND SYMPOSIUM ON THE FOUNDATIONS OF SOFTWARE ENGINEERING, 2019, :477-487
[33]   Model-Based Analysis of Biological Tissue Heating by Point Ultrasound Sources [J].
Lyashko, S. I. ;
Klyushin, D. A. ;
Pavlychko, V. V. .
JOURNAL OF AUTOMATION AND INFORMATION SCIENCES, 2010, 42 (02) :44-50
[34]   Model-Based Analysis and Improvement of Vehicle Radiation Emissions at Low Frequency [J].
Gao, Feng ;
Wang, Qing ;
Xiong, Yu .
APPLIED SCIENCES-BASEL, 2021, 11 (17)
[35]   Analysis of pulsed suction flow control behavior based on a nonlinear reduced-order model [J].
Lu Weiyu ;
Huang Guoping ;
Wang Jinchun .
AEROSPACE SCIENCE AND TECHNOLOGY, 2022, 122
[36]   Topology Rule-Based Methodology for Flow Separation Analysis in Turbomachinery [J].
Duquesne, Pierre ;
Chaneac, Joffrey ;
Mondin, Gabriel ;
Dombard, Jerome .
INTERNATIONAL JOURNAL OF TURBOMACHINERY PROPULSION AND POWER, 2022, 7 (03)
[37]   Active flow separation control by a position-based iterative learning control algorithm with experimental validation [J].
Cai, Zhonglun ;
Chen, Peng ;
Angland, David ;
Zhang, Xin .
INTERNATIONAL JOURNAL OF CONTROL, 2014, 87 (03) :633-641
[38]   Model-based cold-start speed control scheme for spark ignition engines [J].
Zhang, Jiangyan ;
Shen, Tielong ;
Marino, Riccardo .
CONTROL ENGINEERING PRACTICE, 2010, 18 (11) :1285-1294
[39]   Control and Entropy Analysis of Corner Flow Separation in a Compressor Cascade Using Streamwise Grooves [J].
Yi, Weilin ;
Ji, Lucheng .
ENTROPY, 2019, 21 (10)
[40]   Numerical study on the flow control mechanisms of an off-surface circular cylinder for wall-bounded flows with separation [J].
Luo, Dahai ;
Bai, Yihao ;
Wang, Ziyao .
OCEAN ENGINEERING, 2024, 294