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Prediction and validation of the mean flow and the acoustic performance of reactive mufflers using computational fluid dynamics

机译:利用计算流体动力学预测和验证反应消声器的平均流量和声学性能

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摘要

Virtually all reciprocating internal combustion engines are fitted with mufflers. The muffler fitted to an engine is intended to reduce the pressure pulses associated with the exhaust gas leaving the cylinders of the engine. Generally mufflers fitted to such engines are essentially reactive devices as opposed to being dissipative devices. The aim of this research is to develop a computational fluid dynamics (CFO) model to predict the acoustic and mean flow performance of reactive mufflers used with large diesel engines for agriculture, mining, transport and marine applications. Currently such mufflers are designed on a simplified theoretical and/or empirical basis. Consequently the design is generally conservative and so it results in weight and cost penalties.The basis of the CFD acoustic modelling approach is to apply a pulse of suitable amplitude and duration at the inlet of the muffler. The time dependent CFD model determines flow variables associated with the resulting perturbation at the outlet of the muffler. The inlet and outlet pressure time histories derived from the CFD analysis can be Fourier transformed to allow the frequency-dependent transmission loss of the muffler to be found. The acoustic pulse can also be superimposed on a steady flow at the inlet and the resulting perturbation superimposed on the steady flow at the outlet can be determined. Thus the frequency-dependent transmission loss for the acoustic with mean flow performance of the muffler can be found.This CFD modelling approach is used to predict the performance of various types of reactive mufflers and the CFD models are validated against laboratory and published results of full-scale silencers.
机译:几乎所有往复式内燃机都装有消声器。安装在发动机上的消声器旨在减少与离开发动机气缸的废气相关的压力脉冲。通常,安装到这种发动机上的消声器实质上是反应性装置,而不是耗散装置。这项研究的目的是开发一种计算流体动力学(CFO)模型,以预测用于农业,采矿,运输和海洋应用的大型柴油机所使用的反应消声器的声学和平均流动性能。当前,这种消声器是在简化的理论和/或经验基础上设计的。因此,该设计通常是保守的,因此会导致重量和成本的损失。CFD声学建模方法的基础是在消声器的入口处施加适当幅度和持续时间的脉冲。时间相关的CFD模型确定与消声器出口处所产生的扰动相关的流量变量。可以对通过CFD分析得出的入口和出口压力时间历史进行傅立叶变换,以发现消声器的频率相关的传输损耗。声脉冲还可以叠加在入口处的稳定流上,并且可以确定叠加在出口处的稳定流上的最终扰动。因此,可以找到消声器具有平均流量性能的声的频率相关的传输损耗。这种CFD建模方法用于预测各种类型的反应消声器的性能,并且针对实验室和已发布的完整结果验证了CFD模型规模的消音器。

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