Computational approach for the acoustic modelling of large aftertreatment devices with multimodal incident sound fields

IF 1.9 4区 工程技术 Q3 ENGINEERING, MECHANICAL Advances in Mechanical Engineering Pub Date : 2023-09-01 DOI:10.1177/16878132231199870
Eva María Sánchez-Orgaz, Francisco David Denia, Jose Martínez-Casas, Javier Carballeira
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引用次数: 1

Abstract

The influence of multimodal incident sound fields on the acoustic behaviour of large aftertreatment devices incorporating a monolith is modelled and analysed in detail. The analytical mode matching method is applied to the compatibility conditions of the three-dimensional acoustic fields at the device geometric discontinuities, leading to the computation of the complex wave amplitudes in all the subdomains involved and the corresponding device transmission loss. To have a realistic model, three-dimensional propagation must be considered in the inlet/outlet ducts and chambers, while one-dimensional wave propagation has to be assumed along the small capillaries of the aftertreatment device monolith (such catalytic converters and particulate filters); therefore, the monolith can be replaced by a plane wave four-pole transfer matrix from an acoustical point of view. On the other hand, for large aftertreatment device inlet ducts such as those found in heavy-duty and off-road engines, the usual models with plane incident wave excitation are not accurate since the onset of higher order incident modes in the inlet duct is expected for the frequency range of interest. Therefore, a variation of the acoustic attenuation performance is likely to occur depending on these modes, similar to the results previously found in the case of large dissipative silencers. Results are presented for three different multimodal incident sound field hypotheses: equal modal amplitude, equal modal power and equal modal energy density. A relevant influence on the sound attenuation is found for the test problems considered in the current investigation.
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具有多模态入射声场的大型后处理装置声学建模的计算方法
本文对多模态入射声场对大型整体式后处理装置声学特性的影响进行了模拟和详细分析。将解析模态匹配方法应用于器件几何不连续处三维声场的相容条件,从而计算出涉及的所有子域的复波幅值以及相应的器件传输损耗。为了得到一个真实的模型,必须考虑进/出口管道和腔室中的三维传播,同时必须假设一维波沿着后处理装置整体(如催化转化器和颗粒过滤器)的小毛细血管传播;因此,从声学角度来看,可以用平面波四极转移矩阵代替单体。另一方面,对于大型后处理装置进气道,如重型和越野发动机中的进气道,通常的平面入射波激励模型是不准确的,因为在感兴趣的频率范围内,进气道中预计会出现高阶入射模式。因此,声学衰减性能的变化可能取决于这些模式,类似于先前在大型耗散消声器的情况下发现的结果。给出了三种不同的多模态入射声场假设:等模态振幅、等模态功率和等模态能量密度。本研究中所考虑的测试问题对声衰减有相关的影响。
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来源期刊
Advances in Mechanical Engineering
Advances in Mechanical Engineering 工程技术-机械工程
CiteScore
3.60
自引率
4.80%
发文量
353
审稿时长
6-12 weeks
期刊介绍: Advances in Mechanical Engineering (AIME) is a JCR Ranked, peer-reviewed, open access journal which publishes a wide range of original research and review articles. The journal Editorial Board welcomes manuscripts in both fundamental and applied research areas, and encourages submissions which contribute novel and innovative insights to the field of mechanical engineering
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