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Reduction of the tonal noise annoyance of axial flow fans by means of optimal blade spacing

机译:通过最佳叶片间距减少轴流风扇的音调噪声

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摘要

A method for the reduction of tonal noise annoyance from axial flow rotors is presented which is based on the uneven circumferential blade spacing. After a short description of the basic theory of the tonal noise generation from turbomachinery bladings, the existing methods for the circumferential spacing choice are analyzed and their practical drawbacks pointed out. A new systematic approach is presented in which a large number of balanced geometries are generated and then evaluated by means of an arbitrary objective function. To test the method, several objective functions have been calculated and the effect of the main parameters has been analyzed. Finally an optimized rotor representative of automotive applications has been realized and tested in the Johnson Electric-GATE semianechoic room in presence of a strong upstream velocity perturbation. The resulting acoustic pressure power spectra have been compared with those of an evenly spaced rotor equipped with the same blades, thus allowing for estimating the interference function of the unevenly spaced rotor. The good agreement with the theoretically expected trend proves that even in presence of strong velocity perturbation the obtained acoustic pressure power spectrum changes according to the theory which may thus be employed.
机译:基于不均匀的周向叶片间距,提出了一种减少轴向流转子的音调噪声的方法。在简要介绍了涡轮机械叶片产生音调噪声的基本理论之后,分析了现有的圆周间距选择方法,并指出了它们的实际缺点。提出了一种新的系统方法,其中生成大量的平衡几何,然后通过任意目标函数进行评估。为了测试该方法,已经计算了几个目标函数,并分析了主要参数的影响。最终,在强上游速度扰动下,在Johnson Electric-GATE半消声室中实现并测试了代表汽车应用的优化转子。已经将所得的声压功率谱与配备有相同叶片的均匀间隔的转子的声压功率谱进行了比较,从而可以估计不均匀间隔的转子的干扰功能。与理论上预期的趋势的良好一致性证明,即使在存在强速度扰动的情况下,所获得的声压功率谱也会根据可采用的理论进行改变。

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