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An experimental investigation of jet noise from septa nozzles

机译:隔膜喷嘴喷射噪声的实验研究

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Results of an experimental study with a large aspect ratio rectangular nozzle, divided into multiple compartments or septa, as pertinent to distributed propulsion, are presented. Noise measurements at high-subsonic conditions show that the nozzle with the septa is quieter than the corresponding baseline nozzle without the septa. At relatively lower Mach numbers a high-frequency tone is heard. This is shown to be due to Karmann vortex shedding from the trailing edges of the partitions that separate a septum from the adjacent ones. Flowfield measurements for a six septa case show that the cellular flow structure, issuing from the nozzle, goes through a curious coalescence with increasing downstream distance (x) from the nozzle. Adjacent cells pair to yield a three-cell structure by x/D=2, where D is the equivalent diameter of the baseline nozzle. By about x/D =16, both the septa case and the baseline case evolve to yield axisymmetric flowfields.
机译:提出了具有大宽高比的实验研究的实验研究,分为多个隔室或隔膜,与分布推进有关。高次级条件下的噪声测量表明,没有隔膜的相应基线喷嘴,带有隔膜的喷嘴更安静。在相对较低的马赫数,听到高频音。这被证明是由于karmann涡旋从分区的尾部旋转,该分区从相邻的分区分离隔膜。对于六个隔膜壳的流场测量表明,从喷嘴发出的蜂窝流动结构通过致命的聚结,随着喷嘴的增加下游距离(x)。相邻的细胞对通过X / D = 2产生三个单元结构,其中D是基线喷嘴的等效直径。大约x / d = 16,隔膜壳和基线案例都会进化以屈服于轴对称流场。

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