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Target Setting and Prediction for Cabin Noise and Vibration in Aircraft Development

机译:飞机开发中机舱噪声和振动的目标设定和预测

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A methodology to secure cabin noise and vibration targets is presented. Early in the design process, typically in the Joint Definition Phase. Targets are cascaded from system to component level to comply with the overall cabin noise target in various load cases. During the Detailed Design Phase. 3D simulation models are build up to further secure and refine the v ibro-acoustic performance of the cabm noise related subsystems. Noise sources arc estimated for the target setting based on layer analytical and empirical expressions from literature. This includes various types of engine noise - fan, jet. and propeller noise - as well as turbulent boundary layer noise For other noise sources. ECS and various auxiliaries, targets are set such as to ensure the overall cabin noise level. To synthesize the cabin noise, these noise sources are combined with estimates of the noise transfer through panels and the cavity effect of the cabin. This part is again based on analytical and empirical formulations. Targets for interior components such as panels and blankets can be derived here, early in the development process, and comprehensive parameter studies can be easily carried out The whole process is validated against in flight measurement data. Later in the design process, detailed simulation takes place to confirm the cabin noise design. Noise sources such as turbulent boundary layer, propeller. ECS. and engine fan can be simulated w ith good accuracy. A vibro-acoustic model including fuselage structure, blankets, interior panels, floor and other relevant components is used for low and mid frequency cabin noise prediction, to secure and refine the noise targets.
机译:提出了一种确保机舱噪声和振动目标的方法。在设计过程的早期,通常在“联合定义”阶段。目标从系统级到组件级级联,以符合各种负载情况下的总体机舱噪声目标。在详细设计阶段。建立3D仿真模型以进一步保护和改善与驾驶室噪音相关的子系统的振动声学性能。基于层分析和来自文献的经验表达式,可以估算目标设置的噪声源。这包括各种类型的发动机噪音-风扇,喷气机。和螺旋桨噪声-以及湍流边界层噪声对于其他噪声源。设定ECS和各种辅助设备的目标,以确保整体机舱噪声水平。为了合成机舱噪声,将这些噪声源与通过面板传递的噪声估计和机舱的空腔效应相结合。这部分还是基于分析和经验公式。在开发过程的早期,可以在此处导出诸如面板和毯子之类的内部组件的目标,并且可以轻松地进行全面的参数研究。整个过程都根据飞行中的测量数据进行了验证。在设计过程的后期,将进行详细的仿真以确认机舱噪声的设计。噪声源,例如湍流边界层,螺旋桨。 ECS。可以很好地模拟发动机风扇。包括机身结构,毛毯,内饰板,地板和其他相关组件的振动声学模型用于低频和中频机舱噪声预测,以确保和完善噪声目标。

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