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Application of numerical and experimental techniques for the aero-acoustic characterization of a car rear-view mirror

机译:数值和实验技术在汽车后视镜空气声学表征中的应用

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Numerical as well as experimental approaches are used to capture aero-acoustic characteristics of a car rear-view mirror. The numerical study splits up into several parts. Using an actual production mirror, particular emphasis must be put on the geometry preparation and mesh generation. Initially, a CFD simulation of the entire car aerodynamics is performed to extract the proper flow boundary conditions for the aero-acoustic simulation of a smaller section surrounding the mirror. Pressure fluctuations on the surfaces extracted during an LES generate the data base required for the aero-acoustic post-processing. The acoustic pressure at several monitoring points is then calculated using Lighthill's Acoustic Analogy. To include refraction effects of the nearby surfaces a direct BEM approach is also employed. Utilizing the PIV method, local areas of increased turbulence are identified experimentally. Microphone measurements with and without the exterior mirror are performed.
机译:数值和实验方法都用于捕获汽车后视镜的空气声学特性。数值研究分为几个部分。使用实际的生产镜,必须特别强调几何图形的准备和网格的生成。最初,执行整个汽车空气动力学的CFD模拟,以提取适当的流边界条件,以便对镜子周围较小部分进行空气声学模拟。 LES期间提取的表面上的压力波动产生了航空声学后处理所需的数据库。然后,使用Lighthill的“声学类比”计算多个监测点的声压。为了包括附近表面的折射效果,还采用了直接BEM方法。利用PIV方法,实验确定了湍流增加的局部区域。进行带和不带外后视镜的麦克风测量。

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