Acoustic performance and modal analysis for the muffler of a four-stroke three-cylinder inline spark ignition engine

S. Chatterjee
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Abstract

This work presents a concise analytical report on four suggested design modifications (geometrical configuration of the resonating chamber) of a practical muffler model based on acoustic performance and reduction of back pressure. The existing model shows a very low acoustic transmission loss (15.8 dB) with a back pressure of nearly 2.52 × 105 Pa. The second proposed model provided better attenuation of 23.2 dB transmission loss but produced more back pressure (2.70 × 105 Pa). Modification of the second model by tapering of the inlet pipe's outlet accounted for the reduction in back pressure to around 2.30 × 105 Pa and increased the noise attenuation level by 1.2 dB. More significant attenuation of noise (14.8 dB) was observed in the fourth model without any back pressure. The fifth model produced the highest attenuation of 57.1 dB as compared to the other four models with undesirable highest back pressure around 2.83 × 105 Pa.
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四冲程三缸直列火花点火发动机消声器声学性能及模态分析
基于声学性能和减少背压,本文对实际消声器模型的四种建议设计修改(共振腔的几何结构)进行了简要的分析报告。现有模型显示,在背压接近2.52 × 105 Pa的情况下,声传输损失非常低(15.8 dB)。第二种模型提供了更好的23.2 dB传输损耗衰减,但产生了更多的背压(2.70 × 105 Pa)。对第二种模型进行改进,使进气管出口变细,使背压降低到2.30 × 105 Pa左右,噪声衰减水平提高了1.2 dB。在没有背压的情况下,第四种模型的噪声衰减更为显著(14.8 dB)。与其他四个模型相比,第五个模型产生了57.1 dB的最大衰减,其最高背压约为2.83 × 105 Pa。
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