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Mixing noise reduction for rectangular supersonic jets by nozzle shaping and induced screech mixing

机译:矩形超音速喷嘴的喷嘴成形和诱导声混合降低混合噪声

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摘要

Two methods of mixing noise modification were studied for supersonic jets flowing from rectangular nozzles with an aspect ratio of about five and a small dimension of about 1.4 cm. The first involves nozzle geometry variation using either single (unsymmetrical) or double bevelled (symmetrical) thirty degree cutbacks of the nozzle exit. Both converging (C) and converging-diverging (C-D) versions were tested. The double bevelled C-D nozzle produced a jet mixing noise reduction of about 4 dB compared to a standard rectangular C-D nozzle. In addition all bevelled nozzles produced an upstream shift in peak mixing noise which is conducive to improved attenuation when the nozzle is used in an acoustically treated duct. A large increase in high frequency noise also occurred near the plane of the nozzle exit. Because of near normal incidence, this noise can be easily attenuated with wall treatment. The second approach uses paddles inserted on the edge of the two sides of the jet to induce screech and greatly enhance the jet mixing. Although screech and mixing noise levels are increased, the enhanced mixing moves the source locations upstream and may make an enclosed system more amenable to noise reduction using wall acoustic treatment.
机译:对于从矩形喷嘴喷出的超声速射流,研究了两种混合噪声修正方法,其长宽比约为5,小尺寸约为1.4 cm。第一个涉及使用喷嘴出口的单(非对称)或双斜角(对称)三十度切角来改变喷嘴几何形状。同时测试了融合版(C)和融合版(C-D)。与标准矩形C-D喷嘴相比,双斜角C-D喷嘴可减少约4 dB的喷射混合噪声。另外,所有倾斜的喷嘴在峰值混合噪声中产生上游偏移,当在经声学处理的管道中使用喷嘴时,这有助于改善衰减。在喷嘴出口平面附近也发生了高频噪声的大幅增加。由于接近法线入射,这种噪声可以通过壁处理轻松衰减。第二种方法是使用插入桨叶两侧边缘的桨叶来产生尖叫声并大大增强喷射流的混合。尽管刺耳声和混音噪声水平增加,但增强的混音将声源位置移至上游,并可能使封闭式系统更易于使用壁声学处理降低噪声。

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