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Scaling Laws in Automotive Aeroacoustics

机译:汽车航空声学中的比例定律

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Scaling laws - for example the variation of sound pressure with wind speed - are a key to the physical understanding of aeroacoustic phenomena. Aeroacoustics in Automotive applications differs from other fields of aeroacoustics: It is limited to low Mach numbers, the flow field is dominated by separated flows and the radiation into the far field is typically not of primary interest. On the other hand there are of course many common problems and findings shared with other fields in aeroacoustics. Therefore it is important to identify common areas with other, probably more advanced directions in aeroacoustics. But this has to be done without forgetting the practical demands of automotive application.Main sources for interior wind noise in vehicles are leakage noise, cavity noise and the noise generated by separated flows at the outer surface. All three of these noise sources will be investigated in this paper. Of special interest will be the dependence on the wind velocity. It will be shown that three different exponents (U~4, U~6 and U~8), corresponding in aeroacoustics to monopole, dipole and quadrupole noise, can be present in a single source.
机译:标度定律-例如声压随风速的变化-是物理理解空气声现象的关键。汽车应用中的航空声学与其他航空声学领域有所不同:它仅限于低马赫数,流场以分离的流动为主,而进入远场的辐射通常不是主要问题。另一方面,在航空声学领域当然还有许多共同的问题和发现。因此,重要的是确定航空声学中与其他可能更高级的方向相同的区域。但这必须在不忘记汽车应用实际需求的情况下进行。车辆内部风噪声的主要来源是泄漏噪声,空腔噪声以及外表面分离流产生的噪声。本文将研究所有这三种噪声源。对风速的依赖性尤其令人关注。可以看出,在航空声学中,对应于单极子,偶极子和四极子噪声的三个不同指数(U〜4,U〜6和U〜8)可以存在于单个源中。

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