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Investigations of the Influence of Lower Frequency Aerodynamic Noise on Interior Cruise and Exterior Pass-By Sound Levels

机译:低频空气动力噪声对内部巡航和外部通过声级的影响的研究

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The results of a series of tests were performed that are used to investigate the contribution of aerodynamic noise to lower frequency passenger car interior and exterior cruise noise levels. Wind tunnel measurements were used to isolate aerodynamic noise from tire-pavement and engine noise and to indicate that the vehicle underbody is a significant source region for both interior and exterior noise. Comparing interior on-road measurements to the wind tunnel results, it was found that aerodynamic noise was slightly less than an equal contributor to cruise noise averaging 4.8 dB lower than the road levels between 50 and 400 Hz at a speed of 80 km/h. At 140 km/h, the difference dropped to 2.3 dB indicating that the aerodynamic noise was the major contributor. For exterior pass-by, aerodynamic noise levels were found to account for almost all of the noise measured during coast-by conditions in the frequency range from 50 to 400 Hz at 97 km/h. This finding was substantiated by additional pass-by testing using different tires on a variety of pavements. It was further found that aerodynamic noise was likely a partial contributor to pass-by noise levels at vehicle speeds as low 56 km/h. These influences were also indicted by comparing tire-pavement source levels measured on-board to the overall cruise and coast pass-by levels. Although the influence of aerodynamic noise will vary with tire design, vehicle design, pavement, and vehicle speed, this paper should provide motivation for considering it in both predicting and reducing interior and exterior noise.
机译:进行了一系列测试,以调查空气动力学噪声对低频客车内部和外部巡航噪声水平的影响。风洞测量被用来将空气动力学噪声与轮胎路面噪声和发动机噪声隔离开,并表明车辆车身底部是内部和外部噪声的重要来源区域。将内部道路测量结果与风洞结果进行比较,发现在80 km / h的速度下,空气动力学噪声略小于对巡航噪声的同等贡献,该噪声平均比50至400 Hz之间的道路水平低4.8 dB。在140 km / h时,差异降至2.3 dB,表明空气动力学噪声是主要的贡献者。对于外部通过,发现空气动力学噪声水平占在97 km / h的50至400 Hz频率范围内的滑行条件期间测得的几乎所有噪声。在不同的路面上使用不同的轮胎进行了额外的通过测试,证实了这一发现。进一步发现,在低至56 km / h的车速下,空气动力学噪声很可能是造成行车噪声水平的部分原因。这些影响也是通过将船上测量的轮胎路面源水平与整个巡航和海岸通过水平进行比较而得出的。尽管空气动力学噪声的影响会随轮胎设计,车辆设计,路面和车辆速度的变化而变化,但本文应该为预测和减少内部和外部噪声提供动力。

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