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Measurement of Exterior Surface Pressures and Interior Cabin Noise in Response to Vehicle Form Changes

机译:响应车辆形态变化的外表压力和室内舱噪声测量

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Automotive manufactures demand early assessment of vehicle form design against wind noise attribute to eliminate any engineering waste induced by late design changes. To achieve such an assessment, it is necessary to determine a measurable quantity which is able to represent vehicle form changes, and to understand the relationship between the quantity and vehicle interior cabin noise. This paper reports experimental measurements of vehicle exterior surface pressure and the interior cabin noise level in response to the change of exterior rear view mirror shape. Measurements show that exterior surface pressure on vehicle greenhouse panel is a primary factor of wind noise load to the interior cabin noise; they can be used in preliminary wind noise ranking. Care should be taken when using them in ranking vehicle form wind noise performance. It has been observed that a change in surface pressure on the front side window does not necessarily lead to a change in the interior cabin noise. Further effort is needed to improve the understanding of the characteristics of aerodynamic turbulence field and acoustic field near the vehicle exterior surface and the mechanism of how they contribute to the interior cabin noise.
机译:汽车制造商需求早期评估车辆形态设计对抗风噪声属性,以消除后期设计变化引起的任何工程废物。为了实现这样的评估,有必要确定能够代表车辆形态变化的可测量数量,并了解数量和车辆内部舱室噪声之间的关系。本文报告了车辆外表压力和内部舱噪声水平的实验测量响应了外部后视镜形状的变化。测量表明,车辆温室面板上的外表压力是风噪声负荷对内舱噪声的主要因素;它们可用于初步风噪声排名。在排名车辆中使用它们时应小心,形成风噪声性能。已经观察到,前侧窗口的表面压力的变化不一定导致内部舱室噪声的变化。需要进一步努力来改善对车辆外表面附近的空气动力湍流场和声场的特性以及它们如何促进内部舱室噪音的机制。

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