首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Passive Control of Transonic Cavity Aeroacoustics
【24h】

Passive Control of Transonic Cavity Aeroacoustics

机译:跨音腔气动声学的被动控制

获取原文
获取原文并翻译 | 示例
           

摘要

In recent years the continuing trend for the internalization of stores within an aircraft fuselage has led to a renewed interest in the field of cavity aeroacoustics. Open cavities exposed to transonic flow exhibit large pressure fluctuations which can result in damage to stores or components carried within the cavity. This study investigates the use of a passive resonant absorber based on Helmholtz resonators to attenuate the unsteady pressure fluctuations that arise in such cavity flows. The arrays are expected to remove energy from the high intensity cavity oscillations at the frequency to which they are tuned and therefore, to reduce the cavity noise. Six resonant arrays were designed to target individual Rossiter modes within a cavity. The arrays were tested in a small scale wind tunnel at both Mach 0.8 and Mach 0.9. The performance of the arrays were tested individually at both the front and rear wall of the cavity as well as in a combined arrangement. A peak attenuation of 14 dB was measured for an array at the front wall at Mach 0.9. A smaller attenuation of 8 dB was achieved when the same array was tested at Mach 0.8. Combined resonator installations at both the front and rear walls of the cavity further increased the peak sound pressure level (SPL) attenuation up to 18 dB at Mach 0.9. The investigation shows that passive resonant absorbers are a promising palliative method for the reduction of cavity acoustic modes at high subsonic speeds.
机译:近年来,飞机机身内部存储内部化的持续趋势引起了对空腔空气声学领域的新兴趣。暴露于跨音速流的开放腔体表现出较大的压力波动,这可能会损坏腔体内的存储或组件。这项研究研究了基于Helmholtz谐振器的无源谐振吸收器的使用,以衰减这种空腔流中产生的不稳定压力波动。期望阵列以它们被调谐到的频率从高强度腔体振荡中去除能量,并因此减小腔体噪声。设计了六个谐振阵列,以瞄准腔体内的各个Rossiter模式。在小风洞中以0.8马赫和0.9马赫的速度对阵列进行了测试。分别在腔体的前壁和后壁以及组合结构中分别测试了阵列的性能。对于前壁处的阵列,在0.9马赫数处测得的峰值衰减为14 dB。当以0.8马赫的速度测试同一阵列时,可实现8 dB的较小衰减。腔体前后壁上的组合谐振器安装进一步将峰值声压级(SPL)衰减在0.9马赫时提高到18 dB。研究表明,无源谐振吸收器是一种有希望的姑息治疗方法,可在高亚音速下降低腔体的声模。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号