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首页> 外文期刊>Journal of low frequency noise, vibration and active control >Muffler structure improvement based on acoustic finite element analysis
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Muffler structure improvement based on acoustic finite element analysis

机译:基于声学有限元分析的消声器结构改进

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Aiming to obtain the acoustic attenuation performance of exhaust muffler of diesel engine and the influence of main structural parameters on its acoustic attenuation characteristics, the finite element analysis method and acoustic theory were adopted to numerically investigate the acoustic attenuation performance under the boundary condition of acoustic adiabatic propagation and muffler wall. It suggested that the noise cancellation effect of muffler was poor at the middle and low frequency in range of 0-3000 Hz, and the transfer loss of muffler was basically 0 dB pass frequency at 1100 Hz. According to previous single-factor study experience, the structural factors, such as the expansion ratio, insertion length of outlet perforated pipe, the distance between the diaphragm and the front part of muffler, have influences on the acoustic performance of muffler at low frequency. Thus, they were taken as the starting point to study the influence of multiple interaction factors on the muffling performance by using orthogonal design method combined with the finite element analysis method. The influence degree of different structure parameters on the acoustic performance of muffler and the optimized structure parameters were obtained. Through the analysis on the acoustic characteristic of the optimized muffler, it indicated that the transmission loss of the improved muffler had significant increase in other frequency range except the range of 650-800 Hz and 2500-2700 Hz, especially at frequency of 1100 Hz compared with the original muffler. In the range of 0-3000 Hz, the mean of transmission loss of the improved muffler was about 9.8 dB larger than that of original muffler, which indicated that better noise cancellation effect was achieved. The improved muffler also provided a certain reference for the structural improvement of similar muffler.
机译:旨在获得柴油发动机排气消声器的声学衰减性能,以及主要结构参数对其声学衰减特性的影响,采用了有限元分析方法和声学理论来数值研究了声反应的边界条件下的声学衰减性能传播和消声器墙。它表明消声器的噪音消除效果在0-3000Hz范围内的中间低频和低频差,消声器的转移损耗基本上是1100 Hz的0dB通过频率。根据以前的单因素研究经验,诸如膨胀比,出口穿孔管的插入长度,隔膜之间的距离和消声器的前部的结构因素对低频表示消声器的声学性能。因此,通过使用正交设计方法与有限元分析方法结合使用正交设计方法,作为研究多次相互作用因子对消除性能的影响的起点。得到了不同结构参数对消声器声学性能的影响和优化结构参数。通过分析优化消声器的声学特性,表示改进的消声器的传输损耗除了650-800Hz和2500-2700Hz的范围之外的其他频率范围内的速度显着增加,尤其是1100 Hz的频率相比与原始的消声器。在0-3000 Hz的范围内,改进的消声器的透射损失的平均值大约为原始消声器的速度约为9.8dB,这表明达到了更好的噪声消除效果。改进的消声器还为类似消声器的结构改善提供了一定的参考。

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