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Study of the Tonal Casing Noise of a Centrifugal Fan at the Blade Passing Frequency. Part II. Vibroacoustics

机译:离心风机在叶片通过频率下的色调套管噪声研究。 第二部分。 v声学

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This paper studied the casing vibration and noise radiation of a centrifugal fan at the blade passing frequency (BPF) induced by the internal unsteady flow. Three-dimensional numerical simulation of the complete unsteady flow in the whole impeller-volute configuration was carried out using computational fluid dynamics (CFD) techniques. Pressure fluctuations on the casing were obtained, and the BPF component was extracted after Fast Fourier Transform (FFT). In Part I of this two-part study, the BPF pressure fluctuation was modeled as aeroacoustic dipole source according to Lighthill’s acoustic analogy theory, and sound propagation was simulated regarding the casing as a rigid body. In this part, the casing was modeled as an elastic structure in order to study the tonal vibroacoustics of the casing structure with the BPF pressure fluctuations as excitation. Time harmonic response of the casing was calculated using the finite element method (FEM) and vibroacoustic noise radiation was analyzed by the boundary element method (BEM). The primary objective is to make an attempt to quantitatively evaluate the flow-induced casing vibration and noise radiation in fluid machinery. Some results were obtained casting light on the characteristics of casing vibration and noise radiation.
机译:本文研究了内部不稳定流动造成的叶片通过频率(BPF)的离心机的套管振动和噪声辐射。使用计算流体动力学(CFD)技术进行整个叶轮蜗壳配置中完全不稳定流的三维数值模拟。获得了壳体上的压力波动,并在快速傅立叶变换(FFT)后提取BPF组分。在这两部分研究的第I部分中,根据灯灰的声学比喻,BPF压力波动被建模为气动声学偶极源,并模拟壳体作为刚体的声音传播。在该部分中,壳体被建模为弹性结构,以便将壳体结构的色调瓣发声学与BPF压力波动作为激发来研究。使用有限元法(FEM)计算壳体的时间谐波响应,并通过边界元法(BEM)分析了偶联噪声辐射。主要目标是尝试定量地评估流体机械中的流动感应的壳体振动和噪声辐射。在壳体振动和噪声辐射的特征上获得了一些结果。

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