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A Vibro-Acoustic Coupling Analysis of Bus Passenger Compartment Based on the Finite Element Method

机译:基于有限元法的公交车乘客舱的振动声耦合分析

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Based on the finite element method (FEM), this paper presented a technique for analyzing the vibro-acoustic coupling characteristics of bus passenger compartments. In view of sound quality of vehicle interior noises in the low frequency range, the acoustical, structural and coupled acoustic-structural FEM models of the passenger compartment of a sample bus are respectively established for modal, harmonic response analysis. The correlation of the resonance frequencies from 0Hz to 200Hz of the structural vibration, cavity acoustic modals and the coupled vibro-acoustic modals of the bus body is revealed. The harmonic response results suggest that the sound pressure levels at any observed point in the interior cavity have a similar curve pattern in frequencies, but different in their amplitudes. In the low frequency range, the main resonance frequency of the sample bus is 80Hz, which is mainly due to the cavity acoustic modals and the vibro-acoustic coupling relationship of the bus body system. The newly proposed technique can be extended to other types of vehicle for interior noise prediction and sound source recognition and further reduction.
机译:基于有限元方法(FEM),本文提出了一种用于分析公共汽车乘客舱的振动声耦合特性的技术。考虑到在低频范围内车辆内部噪声的音质,分别为模态,谐波响应分析建立了样品总线的乘客舱的声学,结构和耦合声学结构FEM模型。揭示了从0Hz至200Hz的谐振频率与汇流体的腔体模数和耦合的振动声模块的相关性。谐波响应结果表明,内腔中的任何观察点处的声压水平具有相似的频率曲线图案,但在其幅度中不同。在低频范围内,样品总线的主要谐振频率为80Hz,主要是由于腔声模型和总线体系的振动声耦合关系。新提出的技术可以扩展到其他类型的车辆,用于内部噪声预测和声源识别以及进一步减小。

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