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Computational Aero-Acoustics Simulation of Automotive Radiator Fan Noise

机译:汽车散热器风扇噪声的计算空气声学仿真

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Flow bench and engine testing can be used to detect flow induced noise, but understanding the fundamental mechanisms of such noise generation is necessary for developing an effective design. This paper describes Computational Aero-Acoustic (CAA) analyses performed to obtain the broad-band and BPF noise sourcesA computational aero-acoustics simulation on the aerodynamic noise generation of an automotive radiator fan assembly is carried out. Three-dimensional Computational Fluid Dynamics (CFD) simulation of the unsteady flow field was performed including the entire impeller and shroud to obtain the source of an audible broad-band flow noise between 2 to 4 kHz. Static pressure probes placed around the outer-periphery and at the center of the impeller inlet side and, at the shroud cavities to capture the noise sources. The static pressure at all probe locations were FFT (Fast Fourier Transform) processed and sound pressure level (SPL) was calculated. The CAA simulations discussed in this paper identifies the SPL from the fan outer-periphery probes show the dominant source of blade passing frequency (BPF) and the broad-band noise. The BPF level is the strongest in fan outer-peripheral region because of large pressure fluctuations as a result of blade-passing. The broad-band noise on the other hand is the results of tip-leakage interactions with shroud surface and, vortex-vortex and vortex-surface interactions.
机译:流量台和发动机测试可用于检测流动诱导的噪声,但是了解这种噪声生成的基本机制对于开发有效的设计是必要的。本文介绍了在进行的基础上进行的计算航空声(CAA)分析,以获得宽带,并且BPF噪声SourcesA进行计算空气声学仿真对汽车辐射风扇组件的空气动力学噪声产生。执行非定常流场的三维计算流体动力学(CFD)模拟,包括整个叶轮和护罩,以获得2至4kHz之间的可听宽带流噪声的源。静止压力探针围绕外周围绕叶轮入口侧的中心,并且在护罩腔中捕获噪声源。所有探针位置处的静压为FFT(快速傅里叶变换)处理,并计算声压水平(SPL)。本文讨论的CAA模拟识别来自风扇外周探针的SPL,显示刀片通过频率(BPF)和宽带噪声的主导来源。由于叶片通过,BPF水平是风扇外周区域中最强的压力波动。另一方面,宽带噪声是与护罩表面和涡旋 - 涡流和涡旋表面相互作用的尖漏相互作用的结果。

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