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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Assessment of Broadband Noise Generated by a Vehicle Sunroof at Different Flow Conditions using a Digital Wind Tunnel
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Assessment of Broadband Noise Generated by a Vehicle Sunroof at Different Flow Conditions using a Digital Wind Tunnel

机译:使用数字风洞评估车辆天窗在不同流量条件下产生的宽带噪声

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For the automotive industry, the quality and level of the wind noise contribution has a growing importance and therefore should be addressed as early as possible in the development process. Each component of the vehicle is designed to meet its individual noise target to ensure the wind noise passenger comfort level inside the vehicle is met. Sunroof broadband noise is generated by the turbulent flow developed over the roof opening. A strong shear layer and vortices impacting on the trailing edge of the sunroof are typical mechanisms related to the noise production. Sunroof designs are tested to meet broadband noise targets. Experimentally testing designs and making changes to meet these design targets typically involves high cost prototypes, expensive wind tunnel sessions and potentially late design changes. To reduce the associated costs as well as development times, there is strong motivation for the use of a reliable numerical prediction capability early in the vehicle design process. Previous investigations have shown the possibility to use transient CFD/CAA simulations based on Lattice Boltzmann Methods to assess the wind noise performance of mirrors, wipers, underbody designs and buffeting performance of sunroofs and open side windows. This paper presents the use of this computational approach on two production vehicles to assess the broadband noise generated by a fully open sunroof. Computational predictions of mesh deflectors as well as yaw effect were validated against wind tunnel measurements. Also, detailed flow analysis was performed to understand the noise generation mechanisms and to explain the effect of the mesh deflector and flow yaw angle on the interior noise. Accurate prediction of the wind noise performance of the sunroof and the insight provided by the flow analysis proves that this computational approach can be used to make design decisions during the vehicle development process.
机译:对于汽车行业而言,风噪声贡献的质量和水平越来越重要,因此应在开发过程中尽早解决。车辆的每个组件均设计为满足其各自的噪声目标,以确保达到车辆内部的风噪声乘客舒适度水平。天窗宽带噪声是由屋顶开口上方形成的湍流产生的。影响天窗后缘的强剪切层和涡流是与噪声产生有关的典型机制。天窗设计经过测试可满足宽带噪声目标。对设计进行实验性测试并进行更改以满足这些设计目标通常涉及高成本的原型,昂贵的风洞会话以及潜在的后期设计更改。为了减少相关的成本和开发时间,强烈希望在车辆设​​计过程的早期就使用可靠的数值预测功能。先前的研究表明,有可能使用基于莱迪思玻尔兹曼方法的瞬态CFD / CAA仿真来评估后视镜,刮水器,车身设计以及天窗和敞开式侧窗的抖抖性能的风噪声性能。本文介绍了在两个生产车辆上使用这种计算方法来评估由完全开放的天窗产生的宽带噪声的方法。针对风洞测量结果验证了网状导流板以及偏航效应的计算预测。此外,进行了详细的流动分析,以了解噪声产生机理,并解释了网状导流板和流动偏航角对内部噪声的影响。天窗的风噪性能的准确预测和流量分析提供的见解证明,这种计算方法可用于车辆开发过程中的设计决策。

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