首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATION OF PRESSURE FLUCTUATION ON THE VOLUTE OF ABACKWARD CURVED BLADE CENTRIFUGAL FAN
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NUMERICAL INVESTIGATION OF PRESSURE FLUCTUATION ON THE VOLUTE OF ABACKWARD CURVED BLADE CENTRIFUGAL FAN

机译:向后弯曲叶片离心风机的涡旋压力波动的数值研究

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The pressure fluctuations on the volute surface induced by internal unsteady flow are the important sources of fan casing vibration and noise generation. In this paper, a three-dimensional and unsteady flow of a whole impeller-volute structure have been carried out by using commercial CFX code in order to obtain the wall pressure fluctuations on the volute of a large scale centrifugal fan (especially in the vicinity of volute tongue). The two important different flow rates have been simulated, the best efficiency point (BEP) and 130 percent of the BEP (1.3×BEP), multi-domain structure grids have been applied in all the domains of current simulations. The pressure fluctuations of setting locations on the volute have been obtained by this method. Characteristics of these fluctuations in time and frequency domains were mainly analyzed. The results showed that the amplitudes of these pressure fluctuations over the volute changed with the flow rates variation. The blade passing frequency and their second harmonic frequency were observed clearly, and an important peak presented at the blade passing frequency (BPF). The amplitude of BPF has related with the position of the volute. On the circumferential direction of the volute, the highest values appeared in the vicinity of volute tongue; on the axial position, the peak value was discovered near to impeller shrouds. All the calculation results have been compared to the experimental results showing a good agreement.
机译:内部不稳定流动引起的蜗壳表面压力波动是风扇机壳振动和噪声产生的重要来源。本文使用商业CFX代码对整个叶轮-蜗壳结构进行了三维非定常流动,以便获得大型离心风机的蜗壳上的壁压波动(尤其是在附近)。蜗形舌头)。已经模拟了两个重要的不同流速,即最佳效率点(BEP)和BEP的130%(1.3×BEP),多域结构网格已应用于当前模拟的所有域中。通过这种方法已经获得了蜗壳上设置位置的压力波动。主要分析了这些时域和频域波动的特征。结果表明,蜗壳上这些压力波动的幅度随流量的变化而变化。清晰地观察到叶片通过频率及其二次谐波频率,并且在叶片通过频率(BPF)处出现了一个重要的峰值。 BPF的幅度与蜗壳的位置有关。在蜗壳的圆周方向上,最高值出现在蜗壳舌部附近。在轴向位置,在叶轮护罩附近发现了峰值。所有的计算结果都与实验结果进行了比较,显示出很好的一致性。

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