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Design of the centrifugal fan of a belt-driven starter generator with reduced flow noise

机译:减少流量噪声带驱动启动器发生器的离心风扇的设计

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Large eddy simulations based on the explicit algebraic subgrid-scale stress model were carried out to predict the flow-induced noise generated on the centrifugal fan of a belt-driven starter generator using Lighthill's analogy and the method of Ffowcs Williams and Hawkings. The surrounding air was approximated by an ideal gas at fixed room temperature (T-in = 300 K), and the rotating velocity of the fan was considered to be 6000 rpm. The blade array angles were designed using the modulation method, and a large blade curvature was adopted. We identified several centrifugal fan design parameters that could minimize the flow-induced noise while also minimizing fan efficiency losses. Three design parameters: the top serrated edge (theta(t)), the step leading edge (0.52 H-b) and the tail edge (d(b) and r(b)), played a critical role in preventing vortex generation and collision, significantly weakening the surface pressure fluctuations on the blade. The maximum sound pressure level at 800 Hz at a specific location was reduced by 5.5 dB (at the top serrated edge) and 6.8 dB (at the step leading edge) relative to the baseline case. The sound power, calculated over a hemisphere surface of 950 mm, was reduced by 77.3% (at the top serrated edge) and 61.0% (at the step leading edge) relative to the baseline whereas the mass flow rates were reduced by 5.2% and 10.6%, respectively. Experiments were performed using the optimally designed fan in a semi-anechoic chamber. The predicted sound pressure level and frequency were in good agreement with the experimentally measured values.
机译:基于明确代数级级应力模型进行大型涡流模拟,以预测使用Lighthill的类比和FFOWS Williams和Hawkings的方法在皮带驱动启动器发生器的离心风扇上产生的流动引起的噪声。周围空气通过固定室温(T-In = 300k)的理想气体近似,并且风扇的旋转速度被认为是6000rpm。使用调制方法设计刀片阵列角度,采用大的刀片曲率。我们确定了几种离心式风扇设计参数,可以最小化流量引起的噪声,同时也最小化风扇效率损失。三个设计参数:顶部锯齿状边缘(θ(t)),步进前沿(0.52 Hb)和尾部边缘(d(b)和r(b))在防止涡流生成和碰撞中起着关键作用,显着削弱了刀片上的表面压力波动。特定位置的800 Hz的最大声压水平降低5.5dB(顶部锯齿状边缘)和6.8dB相对于基线情况。在950mm的半球表面上计算的声功率降低了77.3%(在顶部锯齿状边缘)和61.0%(在步进前缘)相对于基线,而质量流量降低5.2%分别为10.6%。使用半透道室中的最佳设计风扇进行实验。预测的声压级和频率与实验测量值良好。

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