离心鼓风机调性噪声的数值预测

C. Cravero, D. Marsano
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引用次数: 11

摘要

离心鼓风机广泛应用于汽车、采暖、通风、空调等工业用途。事实上,尽管系统的整体尺寸减小了,但它们允许高压增加到中等高的质量流量。许多作者都致力于提高叶轮和蜗壳的流体动力效率。然而,最近的声音排放标准施加了更严格的限制,使降噪成为设计中最具挑战性的目标之一。音调噪声的降低是这些鼓风机的主要关注点,因为在噪声谱中,一谐波噪声是明显可分辨的。降低这一峰值的技术通常依赖于空气声学实验室的实验测量。在这项工作中,开发了一个CFD程序来准确地预测径向电源中的音调噪声。该方法已通过实际几何图形和实验数据进行了验证。已经测试了各种湍流模型,以在不使用过多计算资源的情况下找到最佳结果。并对三维鼓风机进行了非定常仿真,分析了主要几何参数对降噪效果的影响。为了确定主要几何设计参数对流体动力性能和气动声学性能的影响,采用了作者开发的参数化设计规范来改变几何形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Prediction of Tonal Noise in Centrifugal Blowers
Centrifugal blowers are widely used in automotive, heating, ventilating, air-conditioning and other industrial purposes. In fact, they allow high-pressure increase to a moderately high mass flow rate, despite the reduced overall dimensions of the system. Numerous authors have worked to increase the fluid dynamic efficiency of the impeller and the volute. However, the recent sound emission standards have imposed tighter constraints, making the noise reduction one of the most challenging target for the design. The reduction of the tonal noise is the main concern for these blowers because the noise at the first harmonic is clearly distinguishable in the noise spectrum. Techniques to reduce this peak generally rely on experimental measurements in aeroacoustics laboratory. In this work, a CFD procedure has been developed to accurately predict the tonal noise in radial bowers. The approach has been validated using real geometries and experimental data. Various turbulence models have been tested to find the best results without the use of excessive computational resources. Moreover, unsteady simulations of the 3D blower have been carried out to analyze the influence of the main geometric parameters on the tonal noise reduction. A parametric design code developed by the authors have been used to change the geometry in order to identify the effect of the main geometrical design parameters on both fluid dynamic and aeroacoustics performance.
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