A single-step measurement method for transmission loss of the muffler based on improved transfer matrix

IF 0.3 4区 工程技术 Q4 ACOUSTICS Noise Control Engineering Journal Pub Date : 2023-01-01 DOI:10.3397/1/37711
Tao Zhang, Mengxue Hu, Yanzhang Geng, Tong An, Zhongzheng Liu, Xin Zhao
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Abstract

Transmission loss is a very important acoustic characteristic of the muffler. In order to improve the efficiency of the double-load method for measuring the transmission loss of the muffler, this paper proposes a single-step measurement method for transmission loss of muffler. In addition, the simulation model of the single-step measurement method is established based on the finite element acoustic analysis. For the model, the calculation method of the transmission loss of the muffler is deduced from the theoretical knowledge of the transfer matrix. In the simulation, the sound pressure data of six positions in the model are obtained, and the transfer matrix is used to calculate the transmission loss of the muffler. Then, two simulation comparison experiments were done. In order to verify the validity of the single-step measurement method, the first comparison experiment was to compare the transmission loss of the muffler simulated by the single-step measurement method with their theoretical transmission loss in the finite element acoustic analysis. The results of the simulation validation test cases showed that the transmission loss of the muffler obtained by the single-step measurement method was consistent with the theoretical value. The second comparison experiment was to compare the transmission loss obtained by the single-step measurement method with the transmission loss obtained by the double-load method. The results of the simulation validation test cases showed that at certain frequencies, the transmission loss obtained by the single-step measurement method was more accurate than the transmission loss obtained by the double-load method. In conclusion, the single-step measurement method proposed in this paper can accurately obtain the transmission loss of the muffler with only one measurement, which improves the measurement efficiency.
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基于改进传递矩阵的消声器传递损耗一步测量方法
传输损耗是消声器的一个非常重要的声学特性。为了提高双负载法测量消声器传输损耗的效率,本文提出了一种消声器传输损耗单步测量方法。此外,在有限元声学分析的基础上,建立了单步测量方法的仿真模型。对于该模型,从传递矩阵的理论知识出发,推导了消声器传递损失的计算方法。在仿真中,获得了模型中六个位置的声压数据,并使用传递矩阵计算了消声器的传输损耗。然后,进行了两个仿真对比实验。为了验证单步测量方法的有效性,第一次比较实验是将单步测量方法模拟的消声器的传输损耗与有限元声学分析中的理论传输损耗进行比较。仿真验证试验结果表明,采用单步测量方法得到的消声器传递损耗与理论值一致。第二个比较实验是将通过单步测量方法获得的传输损耗与通过双负载方法获得的损耗进行比较。仿真验证测试用例的结果表明,在特定频率下,单步测量法获得的传输损耗比双负载法获得的损耗更准确。总之,本文提出的单步测量方法只需一次测量就可以准确地获得消声器的传输损耗,提高了测量效率。
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来源期刊
Noise Control Engineering Journal
Noise Control Engineering Journal 工程技术-工程:综合
CiteScore
0.90
自引率
25.00%
发文量
37
审稿时长
3 months
期刊介绍: NCEJ is the pre-eminent academic journal of noise control. It is the International Journal of the Institute of Noise Control Engineering of the USA. It is also produced with the participation and assistance of the Korean Society of Noise and Vibration Engineering (KSNVE). NCEJ reaches noise control professionals around the world, covering over 50 national noise control societies and institutes. INCE encourages you to submit your next paper to NCEJ. Choosing NCEJ: Provides the opportunity to reach a global audience of NCE professionals, academics, and students; Enhances the prestige of your work; Validates your work by formal peer review.
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