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Analysis of Flow Induced Noise in a Passenger Car Exhaust System - An Experimental and Numerical Approach

机译:乘用车排气系统流动诱导噪声分析 - 一种实验性和数值方法

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A muffler or silencer is an integral part of the exhaust system and is a device used to prevent sound from reaching the openings of the exhaust duct and radiating as far field noise. Different acoustical design and analysis techniques are used to predict the acoustical performance of exhaust systems. Flow noise from exhaust tail pipe is one of the major noise sources in a vehicle. Flow noise is generated mainly during fast acceleration operating condition due to complex flow behavior. In this paper, we have studied the detailed flow field and tried to establish an analyses procedure for flow noise prediction. The flow analysis is carried out in commercial CFD solver Star CCM+. The transient engine boundary conditions are obtained from the experimental testing. The flow noise generated from the muffler was calculated by acoustic analogy of Lighthill using the above boundary conditions. The strong fluctuation of pressure inside the muffler generates the broadband noise in the frequency range 1000 - 8000 Hz and the same is validated with experimental data. The experiment was carried out in a specially designed engine test rig in order to measure the exhaust flow noise. The so developed analysis methodology is found to be effective in predicting the exhaust flow noise early in the concept design stages.
机译:消声器或消音器是排气系统的一个组成部分,并且是用于防止声音到达排气管道的开口的装置,并将其辐射到远场噪声。不同的声学设计和分析技术用于预测排气系统的声学性能。排气尾管的流量噪声是车辆中的主要噪声源之一。由于复杂的流动行为,主要在快速加速操作条件期间产生流量噪声。在本文中,我们研究了详细的流场,并试图建立流量噪声预测的分析程序。流程分析在商业CFD求解器Star CCM +中进行。瞬态发动机边界条件是从实验测试中获得的。通过使用上述边界条件,通过灯灰的声学类比计算从消声器产生的流动噪声。消声器内的压力强烈波动在频率范围内的宽带噪声产生1000-8000Hz,并且通过实验数据验证了相同的频率。实验在特殊设计的发动机试验台中进行,以测量排气噪声。因此发现所开发的分析方法是有效地预测概念设计阶段的早期排气噪声。

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