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The Sudden Onset of Acoustic Effects with Increasing Nozzle-Chevron Length In a Mach 0.9 Jet

机译:在0.9马赫射流中,随着喷嘴雪佛龙长度的增加,声学效应突然发作

摘要

The addition of chevrons to the exit of a jet has been found to reduce far-field noise, making it an effective passive noise reduction technique. The selection of specific designs, however, is challenging since mechanics models provide insufficient guidance and computations remain far too expensive for trial-and-error parameter exploration. To assess the design optimization problem, we have experimentally evaluated parametric dependence of sound on chevron geometry. Specifically, rapid prototyping is used to change the model geometries and study the relationship between chevron length and the far-field jet noise. We show that the effect of the chevron starts relatively abruptly for lengths less than 4 mm, which is well less than the 16 mm length selected as a starting point from previous studies. Thus a small increase in the chevron length can produce a large change in the far-field sound. However, for longer chevrons the sound is insensitive to the length, which has important implications for design optimization. Additionally, other flow diagnostics are performed to better understand the flow characteristics resulting in the observed changes in jet noise.
机译:已经发现在喷嘴出口增加人字形可以减少远场噪声,使其成为一种有效的被动降噪技术。但是,由于机械模型无法提供足够的指导,并且对于试错参数探索而言,计算仍然过于昂贵,因此选择特定设计具有挑战性。为了评估设计优化问题,我们通过实验评估了声音对人字形几何形状的参数依赖性。具体而言,快速原型用于更改模型的几何形状,并研究人字形长度与远场射流噪声之间的关系。我们显示,对于小于4毫米的长度,人字形的影响相对突然开始,远小于从先前研究中选择的16毫米长度。因此,人字形长度的少量增加会在远场声音中产生很大的变化。但是,对于更长的人字形,声音对长度不敏感,这对设计优化具有重要意义。此外,还执行其他流量诊断以更好地了解导致观察到的射流噪声变化的流量特性。

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