首页> 外文会议>Vehicle aerodynamics, 2012. >Numerical Simulations of Aeroacoustic Fields around Automobile Rear-View Mirrors
【24h】

Numerical Simulations of Aeroacoustic Fields around Automobile Rear-View Mirrors

机译:汽车后视镜周围空气声场的数值模拟

获取原文
获取原文并翻译 | 示例

摘要

A numerical method to simulate aeroacoustic fields around automobiles is proposed in the present paper. The proposed method can be used to compute sound emissions directly in both far fields and near fields. Sound passes through body structures near A-pillars and rear-view mirrors. The direct predictions of the sound to passengers therefore require solutions of acoustic near fields. Most aeroacoustics simulations around automobiles are based on Lighthill's analogy. Strictly speaking, Lighthill's analogy is not consistent in near fields because near fields are not governed by a simple wave equation. In the present paper, a proper approach is proposed to achieve further progress in the simulation of aeroacoustic fields around automobiles. The difficulties occur because the sound pressure is much smaller than the vortical flow pressure. The present method uses a flow/acoustics splitting technique that derives the modeled acoustic equations under the assumption that there is no acoustic feedback to the flows. The present acoustic equations are defined based on the difference between the compressible and incompressible flow equations. The acoustic equations are calculated with the fourth-order weighted essentially non-oscillatory scheme for the finite volume method, and a number of techniques are used to reduce the calculation time. These techniques use different meshes, time-step sizes, and computational regions in each flow and acoustics calculation. As a result, the present method makes it possible to simulate the acoustic near fields around the rear-view mirrors mounted on a vehicle. The acoustic fields for three different mirror shapes, namely, a baseline mirror, a mirror with a sharp edge around its stay, and a mirror with a sharp edge around its tip, are considered in the present paper. Consequently, the sound emissions from the mirrors and A-pillars are clearly visualized in the near fields as wall as the far fields, and differences in the acoustic fields among the mirror shapes are clarified.
机译:提出了一种数值模拟汽车周围声场的方法。所提出的方法可用于直接计算远场和近场的声音发射。声音穿过A柱和后视镜附近的身体结构。因此,对乘客的声音的直接预测需要声学近场的解决方案。汽车周围的大多数航空声学模拟都是基于Lighthill的类比。严格来说,Lighthill的类比在近场中并不一致,因为近场不受简单波动方程的控制。在本文中,提出了一种合适的方法来实现汽车周围空气声场仿真的进一步进展。出现困难是因为声压远小于涡流压力。本方法使用流动/声学分裂技术,该技术在没有对流动的声学反馈的假设下推导建模的声学方程。基于可压缩和不可压缩流动方程之间的差异来定义本声学方程。声学方程是通过有限体积方法的四阶加权基本非振荡方案来计算的,并且使用了多种技术来减少计算时间。这些技术在每次流动和声学计算中使用不同的网格,时步大小和计算区域。结果,本方法使得可以模拟安装在车辆上的后视镜周围的声近场。本文考虑了三种不同反射镜形状的声场,即基线反射镜,在其支撑柱周围有锋利边缘的反射镜和在其尖端周围有锋利边缘的反射镜。因此,从镜子和A柱发出的声音在近场像远场一样清晰可见,并且澄清了镜面形状之间的声场差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号