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On the Use of BEA With Engine Simulation as an Input to Predict Air Induction Inlet Noise

机译:用发动机仿真使用BEA作为预测空气感应入口噪声的输入

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Engine air induction noise can play a significant role in the reduction of vehicle interior noise levels and tuning interior sound quality. Given the need to reduce prototyping and testing costs, it is important to gain an understanding of the level and frequency structure of the noise radiating from the open inlet of the air induction system. Engine simulation used independently can predict inlet noise; however, its utility is limited to systems that are largely one-dimensional. Systems that exhibit a three-dimensional nature, such as the wave dynamics in an engine air cleaner, require a more intensive approach. Boundary Element Analysis (BEA) has been demonstrated to be a tool that can be used to predict the frequency response of ducted systems and is particularly useful in highly three-dimensional systems. The use of engine simulation to obtain the proper inputs to the BEA can fill this gap in the prediction of radiated noise levels while including the frequency structure or order content inherent in air induction noise. The utility of this approach in the product development cycle and associated results are discussed.
机译:发动机空气感应噪声可以在减少车辆内部噪声水平和调整内部音质中起着重要作用。鉴于需要降低原型化和测试成本,重要的是要了解从空气感应系统的开口入口辐射的噪声的水平和频率结构是很重要的。单独使用的发动机仿真可以预测入口噪声;然而,其实用程序仅限于主要是一维的系统。表现出三维性质的系统,例如发动机空气清洁器中的波动态,需要更加强烈的方法。边界元素分析(BEA)已被证明是一种工具,可用于预测管道系统的频率响应,并且在高度三维系统中特别有用。发动机模拟的使用以获得对BEA的正确输入可以填充在辐射噪声水平的预测中的这种间隙,同时包括空气感应噪声中固有的频率结构或订单内容。讨论了这种方法在产品开发周期和相关结果中的效用。

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