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首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Numerical Simulations of Noise Induced by Flow in HVAC Ventilation Ducts
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Numerical Simulations of Noise Induced by Flow in HVAC Ventilation Ducts

机译:暖通空调通风管道内流动引起的噪声的数值模拟

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摘要

Numerical simulations are performed to investigate noise generated by flow in automotive HVAC ducts. A hybrid computational method for analyzing flow noise is applied: Large Eddy Simulation (LES) for predicting flow fields and Multi-domain boundary element method for predicting acoustic propagation. LES gives time-resolved solutions of flow velocity and pressure fields. By applying the acoustic analogy theory, the unsteady flow parameters are translated into sound source in evaluating the acoustic propagation. The computational result shows the noise caused by the HVAC ducts is strong. The noise is of broadband with a peak value at 370Hz. A major contribution of the noise generation is from the center ducts. Two design modifications of the center ducts are explored to regulate the flow structures with the ducts for reducing noise generation. Test results demonstrate the effectiveness of the modifications.
机译:进行数值模拟以调查由汽车HVAC管道中的流动产生的噪声。应用了一种用于分析流动噪声的混合计算方法:用于预测流场的大涡模拟(LES)和用于预测声传播的多域边界元方法。 LES提供了时间分辨的流速和压力场解决方案。通过应用声学类比理论,将非稳态流动参数转化为声源,以评估声学传播。计算结果表明,HVAC管道引起的噪声很强。该噪声是宽带噪声,其峰值为370Hz。产生噪音的主要原因是中央管道。研究了中央导管的两种设计改进,以调节带有导管的流动结构,以减少噪音的产生。测试结果证明了修改的有效性。

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