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Characteristics of unsteady flow field and flow-induced noise for an axial cooling fan used in a rack mount server computer

机译:机架式服务器计算机中使用的轴流冷却风扇的非稳态流场和流致噪声的特征

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摘要

The recent development of small and lightweight rack mount servers and computers has resulted in the decrease of the size of cooling fans. However, internal fans still need to achieve a high performance to release the heat generated from interior parts, and they should emit low noise. On the contrary, measurement data, such as flow properties and flow visualizations, cannot be obtained easily when cooling fans are small. Thus, a numerical analysis approach is necessary for the performance evaluation and noise reduction of small cooling fans. In this study, the noise of a small cooling fan used for computers or servers was measured and then compared with the aeroacoustic noise result based on a numerical analysis. Three-dimensional Navier-Stokes equations were solved to predict the unsteady flow field and surface pressure fluctuation according to the blades and casing surface used. The simplified Ffowcs Williams and Hawkings equation was used to predict aeroacoustic noise by assuming that a dipole is the major cause of fan noise. Results of the aeroacoustic noise analysis agreed well with that of the experiment, and a tonal noise whose frequency was lower than the first blade passing frequency could be identified in the noise spectrum. This phenomenon is caused by the shape of the bell mouth. A coherence analysis was performed to examine the correlation between the shape of the cooling fan and the noise.
机译:小型轻巧的机架式服务器和计算机的最新发展已导致冷却风扇的尺寸减小。但是,内部风扇仍然需要实现高性能以释放内部零件产生的热量,并且它们应该发出低噪音。相反,当冷却风扇较小时,无法轻松获得流量特性和流量可视化等测量数据。因此,数值分析方法对于小型冷却风扇的性能评估和降噪是必要的。在这项研究中,对用于计算机或服务器的小型冷却风扇的噪声进行了测量,然后根据数值分析与空气声噪声结果进行了比较。求解了三维Navier-Stokes方程,以根据所使用的叶片和壳体表面预测非恒定流场和表面压力波动。通过假设偶极子是风扇噪声的主要原因,简化的Ffowcs Williams和Hawkings方程用于预测空气噪声。空气声噪声分析的结果与实验结果吻合得很好,并且在噪声频谱中可以识别出频率低于第一叶片通过频率的音调噪声。此现象是由喇叭口的形状引起的。进行了相干分析以检查冷却风扇的形状和噪音之间的相关性。

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