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首页> 外文期刊>Noise Control Engineering Journal >Testing of axial fans with microperforated housings
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Testing of axial fans with microperforated housings

机译:测试带有微孔外壳的轴流风扇

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The noise radiated by electronic devices often results from the axial fans used to cool them. One component of axial fan noise is created by fluid shearing in the tip clearance region. In aero engines and other turbine applications, tip noise can be reduced by installing a finite flow resistance strip in the housing around the fan circumference. The finite level of flow resistance created by the slightly permeable housing may dissipate small-scale fluid motions, which may in turn reduce turbulence levels in the tip region and so reduce the tip noise. In the present work, the housing of a 120 mm axial fan was modified to accommodate strips of finite flow resistance, microperforated materials. The fan performance with and without the microperforated treatment was measured so that modified and unmodified fans could be operated at the same performance points and acoustical testing was performed using the ISO 10302 plenum. The fan noise was quantified on the basis of the blade passage tone level and tests were performed using microperforated materials spanning a range of flow resistances. It has been found that there are areas in the fan performance map where tonal noise levels can be consistently reduced by the use of a microperforated housing element. (C) 2016 Institute of Noise Control Engineering.
机译:电子设备辐射的噪声通常是由用于冷却它们的轴流风扇引起的。轴向风扇噪声的一个分量是由叶尖间隙区域中的流体剪切产生的。在航空发动机和其他涡轮机应用中,可以通过在风扇周围的外壳中安装有限的流动阻力条来降低叶尖噪音。由略微可渗透的壳体产生的有限水平的流动阻力可以消除小规模的流体运动,这可以依次减小尖端区域中的湍流水平并因此减小尖端噪声。在当前工作中,对120 mm轴流风扇的外壳进行了修改,以容纳有限流阻的微孔材料条。测量了有无微孔处理的风扇性能,以便可以在相同的性能点上运行经过修改和未经修改的风扇,并使用ISO 10302充气室进行声学测试。风扇噪音是根据叶片通过声级进行定量的,并使用微穿孔的材料进行了测试,这些材料的流动阻力范围很大。已经发现,风扇性能图中的某些区域可以通过使用微孔外壳元件来连续降低音调噪声水平。 (C)2016噪声控制工程研究所。

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