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Simulation of the Sound Attenuation Properties in Highly Complex Exhausts System Using the 2-Port Technique

机译:使用2端口技术模拟高度复杂的排气系统中的声音衰减特性

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Simulation using basic acoustic 2-port elements is a time effective method for prediction of the attenuation of single components as well as of complete exhaust aftertreatment and silencer systems. However, with the complexity of current systems, the transformation from design geometries to networks of basic elements is not straightforward. In this paper a practical example of the modelling of a modern exhaust aftertreatment system is presented. A silencer aimed at the Euro 6 heavy duty emissions legislation containing complex flow turnings, parallel branches, DOC (Diesel Oxidation Catalyst), DPF (Diesel Particulate Filter) and SCR (Selective Catalytic Reduction) catalysts was modelled. Evaluation against measurements in order to understand the influence of the different acoustic elements upon overall attenuation and to improve the model with respect to near field and higher order mode effects was done. With the resulting accuracy, the 2-port model still, despite the geometrical complexity, offers a tractable tool for analysis and design of complete exhaust system in order to gain insertion loss either by modifying existing elements or by adding new.
机译:使用基本声学2端口元件的仿真是一种预测单个部件衰减以及完整的排气后处理和消音器系统的时间有效方法。然而,随着当前系统的复杂性,从设计几何到基本元素网络的转换并不简单。在本文中,提出了现代排气后处理系统的建模的实例。旨在含有复杂流动线,平行分支,DOC(柴油氧化催化剂),DPF(柴油颗粒过滤器)和SCR(选择性催化还原)催化剂的欧元6个重型排放法规的消音器。对测量的评估为了了解不同声学元件在整体衰减时的影响和改进相对于近场和更高阶模式效果的模型。通过所得到的精度,尽管几何复杂性,但是2端口模型仍然提供了一种用于分析和设计完整排气系统的贸易工具,以便通过修改现有元素或通过添加新来获得插入损耗。

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