In this study, tonal noise produced by an isolated centrifugal fan is investigated using unsteady Reynolds-averaged Navier-Stokes (URANS) equations. This type of fans is used in ventilation systems. As the fan propagates tonal noise in the system, it can severely affect the life quality of people that reside in the buildings. Our simulation shows that turbulence kinetic energy (TKE) is unevenly distributed around the rotation axis. Large TKE exists near the shroud at the pressure sides of the blades. It is caused by the recirculating flow. Moreover, the position of the largest TKE periodically varies among the blades. The period corresponds to approximately 4 times the fan rotation period, it was also found in acoustic measurements. The magnitude of the tonal noise at the blade passing frequencies agrees well with experimental data. By analyzing the wall-pressure fluctuations, it is found that the recirculating flow regions with large TKE are dominant sources of the tonal noise.
翻译:在这项研究中,使用不稳定的Reynolds-平均纳维埃-斯托克斯等方程式对孤立的离心扇产生的声纳进行调查。这种风扇在通风系统中使用。随着风扇在系统中传播声纳噪音,它会严重影响居住在这些建筑物中的人的生活质量。我们的模拟表明,在旋转轴周围的波动动能分布不均。大型的TKE存在于悬浮层附近,是由刀片的压力面造成的。此外,最大的TKE 位置在刀片间周期间的位置不同。这个时期大约是风扇旋转周期的4倍,在声学测量中也发现了。刀片通过频率上的声纳噪音与实验数据非常一致。通过分析壁压波动,发现具有大型TKE的相导流区域是声音的主要来源。