IMECH-IR  > 流固耦合系统力学重点实验室
Passive control on deep cavity noise at subsonic speeds by leading-edge grooves
Lu WS(陆维爽); Zheng GN(郑冠男)
Source PublicationJOURNAL OF VIBRATION AND CONTROL
2023-07-28
ISSN1077-5463
AbstractControl effects of leading-edge grooves on deep cavity noise are investigated numerically. The length-to-depth ratio of the grooves are 0.5, 1, and 4, respectively. The freestream Mach number is equal to 0.16, corresponding to the Re based on the cavity length of 7.7 x 10(5). The Detached Eddy Simulations (DES) combined with Ffowcs Williams-Hawkings (FW-H) acoustic analogy are adopted to simulate the characteristic information of the flow field and the acoustic field. The analysis results show that all grooves investigated in this paper have a certain noise control effect, and the groove with the most obvious noise reduction effect is the groove with a length-to-depth ratio of 0.5, namely, the deep groove. Narrowband noise generated by the flow-acoustic feedback (100-700 Hz) and the acoustic resonance mechanism (above 300 Hz) and broadband noise caused by the turbulent disturbance in the shear layer of the cavity mouth significantly reduce when the deep groove is used for the noise control. The reason for the noise reduction is that the leading-edge grooves can effectively change the flow characteristics near the mouth of the downstream cavity. When the flow passes the grooves, the groove flow reduces the energy in the fluid, resulting in the significant decrease of flow velocity of the boundary layer of the incoming flow of the cavity. In addition, the use of the deep groove also promotes the vortex concentration position to move towards the bottom of the cavity, pushes the energy in the shear layer of the downstream cavity towards the front-edge as well as the bottom of the cavity, and stabilizes the development of the shear layer near the cavity mouth.
Keywordcavity noise noise reduction passive control flow-acoustic feedback acoustic resonance
DOI10.1177/10775463231182256
Indexed BySCI ; EI
Language英语
WOS IDWOS:001039327400001
WOS Research AreaAcoustics ; Engineering ; Mechanics
WOS SubjectAcoustics ; Engineering, Mechanical ; Mechanics
Funding OrganizationPostdoctoral Fund of Chinese Academy of Sciences [E2XM0404]
Classification二类
Ranking1
ContributorZheng, GN (corresponding author), Chinese Acad Sci, Inst Mech, Beijing, Peoples R China. ; Zheng, GN (corresponding author), Univ Chinese Acad Sci, Sch Engn, 15 Beisihuanxi Rd, Beijing 100190, Peoples R China.
Citation statistics
Cited Times:2[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/92596
Collection流固耦合系统力学重点实验室
Affiliation1.{Lu, Weishuang, Zheng, Guannan} Chinese Acad Sci, Inst Mech, Beijing, Peoples R China
2.{Zheng, Guannan} Univ Chinese Acad Sci, Sch Engn, Beijing, Peoples R China
3.{Zheng, Guannan} Univ Chinese Acad Sci, Sch Engn, 15 Beisihuanxi Rd, Beijing 100190, Peoples R China
Recommended Citation
GB/T 7714
Lu WS,Zheng GN. Passive control on deep cavity noise at subsonic speeds by leading-edge grooves[J]. JOURNAL OF VIBRATION AND CONTROL,2023.Rp_Au:Zheng, GN (corresponding author), Chinese Acad Sci, Inst Mech, Beijing, Peoples R China., Zheng, GN (corresponding author), Univ Chinese Acad Sci, Sch Engn, 15 Beisihuanxi Rd, Beijing 100190, Peoples R China.
APA 陆维爽,&郑冠男.(2023).Passive control on deep cavity noise at subsonic speeds by leading-edge grooves.JOURNAL OF VIBRATION AND CONTROL.
MLA 陆维爽,et al."Passive control on deep cavity noise at subsonic speeds by leading-edge grooves".JOURNAL OF VIBRATION AND CONTROL (2023).
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