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Flow and geometrical effects on radiated noise from exhaust pipes computed by the Fourier pseudospectral time-domain method

机译:傅里叶拟谱时域法计算的流动和几何效应对排气管辐射噪声的影响

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摘要

The current work initializes a systematic numerical study on the combined effects of the geometry surrounding an automotive exhaust pipe, i.e. the ground surface and the automotive body, as well as the influence of the non-uniform velocity and temperature from the exhaust jet, on the acoustic radiation pattern of the pipe. The problem is treated by first solving the RANS equations to obtain the mean velocity and temperature solution of the exhaust jet. The acoustic radiation is computed by solving the linearized Euler (LEE) equations. For an efficient solution of the LEE, a recently developed multi-domain extended Fourier pseudospectral time-domain (PSTD) methodology is used. This method combines the favorable spectral accuracy of the PSTD method with a local grid refinement in the region with high gradients of the mean flow and temperature fields. A filter was found necessary for numerical stability of the PSTD method for this application. For radiation of noise from an exhaust pipe in free field, results from PSTD show a good agreement with reference results, both for cases with and without a jet flow. Results show that the presence of a rigid ground surface and simplified automotive body increases the radiated sound power by 6 dB for the lower frequency region, and the effect of the body on the directivity is largest for the higher frequencies. Flow effects slightly increase the shielding effect of the body for all frequencies, but have a main impact behind the exhaust pipe, where low frequencies experience higher levels and a cone of low sound levels characterizes the high frequencies.Keywords•Linearized Euler equations; •Pseudospectral time-domain method; •Tailpipe noise; •Flow acoustics
机译:当前的工作开始了对汽车排气管周围几何形状(即地面和车身)的综合影响以及排气喷流的不均匀速度和温度对排气管的影响的系统的数值研究。管道的声辐射图。通过首先求解RANS方程来获得排气喷嘴的平均速度和温度解,可以解决该问题。通过求解线性欧拉(LEE)方程来计算声辐射。对于LEE的有效解决方案,使用了最近开发的多域扩展傅里叶伪谱时域(PSTD)方法。该方法将PSTD方法的良好光谱精度与平均流场和温度场的高梯度区域中的局部网格细化相结合。发现对于该应用,对于PSTD方法的数值稳定性而言,需要一个滤波器。对于自由场中排气管的噪声辐射,无论是否有喷射流,PSTD的结果均与参考结果吻合良好。结果表明,刚性地面的存在和简化的汽车车身在较低的频率区域将辐射声功率提高了6 dB,而在较高的频率下,车身对方向性的影响最大。流动效应会稍微提高人体在所有频率下的屏蔽效果,但会在排气管后面产生主要影响,在排气管后面,低频会经历较高的声级,而低声锥则是高频的特征。 •伪光谱时域方法; •尾管噪音; •流动声学

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