首页> 外文会议>AIAA/CEAS aeroacoustics conference;AIAA aeroacoustics conference >Experimental Validation of Numerical Simulations for An Acoustic Liner in Grazing Flow
【24h】

Experimental Validation of Numerical Simulations for An Acoustic Liner in Grazing Flow

机译:掠流声衬的数值模拟实验验证

获取原文

摘要

A coordinated experimental and numerical simulation effort is carried out to improve our understanding of the physics of acoustic liners in a grazing flow as well our computational aeroacoustics (CAA) method prediction capability. A numerical simulation code based on advanced CAA methods is developed. In a parallel effort, experiments are performed using the Grazing Flow Impedance Tube at the NASA Langley Research Center. In the experiment, a liner is installed in the upper wall of a rectangular flow duct with a 2 inch by 2.5 inch cross section. Spatial distribution of sound pressure levels and relative phases are measured on the wall opposite the liner in the presence of a Mach 0.3 grazing flow. The computer code is validated by comparing computed results with experimental measurements. Good agreements are found. The numerical simulation code is then used to investigate the physical properties of the acoustic liner. It is shown that an acoustic liner can produce self-noise in the presence of a grazing flow and that a feedback acoustic resonance mechanism is responsible for the generation of this liner self-noise. In addition, the same mechanism also creates additional liner drag. An estimate, based on numerical simulation data, indicates that for a resonant liner with a 10% open area ratio, the drag increase would be about 4% of the turbulent boundary layer drag over a flat wall.
机译:进行了协调一致的实验和数值模拟工作,以增进我们对掠流中声学衬层物理特性的理解以及我们的计算航空声学(CAA)方法预测能力。开发了基于先进CAA方法的数值仿真代码。同时,使用NASA兰利研究中心的掠流阻抗管进行了实验。在实验中,将衬管安装在横截面为2英寸乘2.5英寸的矩形流管的上壁中。在存在0.3马赫掠流的情况下,在与衬板相对的壁上测量声压级和相对相位的空间分布。通过将计算结果与实验测量值进行比较来验证计算机代码。找到了良好的协议。然后,使用数值模拟代码来研究隔音衬垫的物理特性。已经表明,在存在掠射流的情况下,声学衬里会产生自噪声,并且反馈声共振机制负责该衬里自噪声的产生。此外,相同的机制还会产生额外的衬管阻力。基于数值模拟数据的估计表明,对于具有10%开孔率的共振衬管,阻力增加将约为平面壁上湍流边界层阻力的4%。

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