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首页> 外文期刊>Noise Control Engineering Journal >Design and analysis of a novel muffler for wide-band transmission loss, low back pressure and reduced flow-induced noise
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Design and analysis of a novel muffler for wide-band transmission loss, low back pressure and reduced flow-induced noise

机译:一种新型消声器的设计和分析,该消声器可实现宽带传输损耗,低背压和减少流动引起的噪声

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With the advancements in quiet engine technology, reduction of the fan noise sources, and use of higher mean flow speeds, the aerodynamic noise generation due to unsteady and turbulent mean flow in the ducts of automotive exhaust muffler may become a significant source of exhaust noise, thereby limiting the net insertion loss of the muffler. Three-pass double-reversal muffler is often used in automotive exhaust systems. This muffler is characterized by a fairly wide-band transmission loss (TL) curve as well as relatively low back pressure. However in the flow-reversal end chambers, it produces a lot of aerodynamic noise due to impingement of jets on the end plates, generation of free shear layer and vortex shedding. This paper deals with the design and analysis of the muffler with a novel feature (tubular bridges in the end-chambers) specially configured to minimize the free shear layer in the end chambers of the three-pass double-reversal muffler as well as to provide adequate acoustic transmission loss and to further reduce the back pressure of the muffler. The TL curve predicted by means of the 1-D integrated transfer matrix (ITM) approach is validated against the 3-D FEM and compared with that of the base muffler (without tubular bridges). Back pressure of the configuration with tubular bridges, estimated by means of the lumped flow-resistance network, is shown to be considerably less than that of the base muffler. (C) 2016 Institute of Noise Control Engineering.
机译:随着静音发动机技术的进步,风扇噪声源的减少以及更高平均速度的使用,由于汽车排气消声器管道中不稳定且湍流的平均流量而产生的空气动力学噪声可能会成为排气噪声的重要来源,从而限制了消声器的净插入损耗。三通双反转消声器通常用于汽车排气系统。这种消声器的特点是相当宽的传输损耗(TL)曲线以及相对较低的背压。但是,在逆流端室中,由于射流撞击端板,产生自由剪切层和涡旋脱落,会产生大量的空气动力学噪声。本文针对消声器的设计和分析进行了研究,该消声器具有新颖的特征(末端腔室中的管状桥),该特征经过特殊配置,可最大程度地减少三通双反转消声器末端腔室中的自由剪切层,并提供足够的声传输损耗,并进一步降低消声器的背压。通过3-D FEM对通过1-D集成传递矩阵(ITM)方法预测的TL曲线进行了验证,并将其与基本消声器(无管状桥)的TL曲线进行了比较。通过集总的流阻网络估算出的带有管状桥的结构的背压显示出明显小于基础消声器的背压。 (C)2016噪声控制工程研究所。

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