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Modal stimulation analysis for acoustic-structure coupling system of the aluminum alloy metro vehicle cavity

机译:铝合金地铁车辆腔体声固耦合系统的模态激励分析

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Analyzing mode of metro vehicle cavity acoustic system is important for avoiding acoustic resonance and reducing interior noise. Using Finite Element Method, the car-body structure model and the cavity model for the aluminum alloy metro vehicle were established by means of reasonable simplification of actual structure. Acoustic-structure coupling model that considers the interaction between structure and sound field was also built. Based on the structure modal, acoustic modal and acoustic-structure coupling modal theories, modal analysis was conducted for the three models. The modal frequency and distortion section of structure, the acoustic modal frequency and sound pressure distribution in vehicle cavity as well as the change of the modal frequency and for the structure and cavity in acoustic-structure coupling system were analyzed. The results show that the interaction between structure and sound field can change the original modal frequency and the vibration mode of the car-body structure and interior cavity.
机译:分析地铁车辆腔体声学系统的模式对于避免声学共振和减少内部噪声非常重要。通过有限元方法,通过合理简化实际结构,建立了铝合金地铁车辆的车身结构模型和空腔模型。建立了考虑结构与声场相互作用的声固耦合模型。基于结构模态,声学模态和声固耦合模态理论,对这三个模型进行了模态分析。分析了结构的模态频率和畸变截面,声腔中的声模态频率和声压分布,以及声结构耦合系统中模态和模腔的模态频率的变化。结果表明,结构和声场之间的相互作用可以改变车身结构和内部空腔的原始模态频率和振动模式。

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