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Hybrid Technique for Underbody Noise Transmission of Wind Noise

机译:风噪声抗体噪声传输的混合技术

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Wind noise has become an important indicator for passenger automobile quality. Several transmission paths can be related to different parts of the vehicle exterior. While the greenhouse (side glasses, windshield, seals & others) often dominates the interior noise level above 500 Hz, the contribution coming from the underbody area usually dominates the interior noise spectrum at lower frequencies. This paper describes a framework of numerical tools which is capable of determining realistic underbody turbulent and acoustic loads being generated for typical driving conditions, as well as performing the noise transmission through underbody panels and the propagation of sound to the drivers ear location. Different numerical tests are performed to demonstrate the ability of a Statistical Energy Analysis model updated with Finite Element Method properties to predict accurately the noise transmission through the underbody of simplified car vehicle in the mid frequency range under aero acoustic excitation. Parameters of the hybrid technique and the use of finite element modeling to estimate them are discussed. Transfer function comparisons between pure FEM and the hybrid technique are performed involving various load types to demonstrate the consistency of these methods. Cabin sound pressure level comparison for a simplified vehicle with wind noise excitation shows good correlation to FEM calculations performed with adequate statistical treatment. In addition, sensitivity analysis for several underbody parameters involving stiffness, mass, damping and geometry design change is applied to show further the utility of the technique for wind noise design.
机译:风声已成为客运汽车质量的重要指标。几条传输路径可以与车辆外部的不同部件有关。虽然温室(侧眼镜,挡风玻璃,海豹&其他)常用于500 Hz以上的内部噪声水平,但是来自二方面区域的贡献通常在较低频率下占据内部噪声谱。本文介绍了一种数字工具的框架,其能够确定用于典型的驾驶条件的稳定性湍流和声学负载,以及执行通过底板的噪声传输和声音传播到驱动器耳位置。执行不同的数值测试以证明用有限元方法特性更新的统计能量分析模型的能力,以准确地预测通过在航空声激励下的中频范围内的简化汽车车辆的噪声传输。讨论了混合技术的参数和使用有限元建模来估计它们。涉及各种负载类型的纯FEM和混合技术之间的传递函数比较,以证明这些方法的一致性。具有风噪声激发的简化车辆的机舱声压级比较显示出与足够的统计处理进行的对有限元计算的良好相关性。此外,应用了涉及刚度,质量,阻尼和几何设计变化的多个涉及刚度,质量,阻尼和几何设计变化的敏感性分析,以表明该技术对风噪声设计的效用。

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