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DEVELOPMENT AND APPLICATION OF FAN NOISE PREDICTION METHOD TO AXIAL AND CENTRIFUGAL FAN

机译:风扇噪声预测方法对轴向和离心风机的开发与应用

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Numerical predictions of fan noise have not been studied extensively. This is due to the scattering effect of the fan casing, duct and the difficulty in obtaining aerodynamic acoustic source. New method to predict the fan noise and performance is developed and used to calculate various fan noise problems. A vortex method is used to model the fan and to calculate the flow field. Acoustic pressures are obtained from the unsteady force fluctuations of the blades using an acoustic analogy. But the acoustic analogy can be applied only in the free field in general. In order to consider the solid boundary effects of the casing, the newly developed Kirchhoff-Helmholtz BEM (Boundary Element Method) is introduced. With the above-mentioned method, the flow field and sound field of centrifugal and axial fan were calculated. Reasonable results are obtained not only for the peak frequencies but also for the amplitudes of the tonal sound. Also, in the predicted sound field, we can see the scattering effect of duct and casing.
机译:风扇噪声的数值预测尚未广泛研究。这是由于风扇壳体,管道和获得空气动力学源的难度的散射效果。开发了预测风扇噪声和性能的新方法,并用于计算各种风扇噪声问题。涡旋方法用于模拟风扇并计算流场。声压从使用声学比较从叶片的不稳定力波动获得。但声学类比只能在自由场中应用。为了考虑壳体的固体边界效应,介绍了新开发的Kirchhoff-Helmholtz BEM(边界元方法)。利用上述方法,计算了离心和轴向风扇的流场和声场。不仅可以用于峰值频率,而且可以获得合理的结果,而是用于色调声音的幅度。此外,在预测的声场中,我们可以看到管道和外壳的散射效果。

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