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Coupling transfer matrix method to finite element method for analyzing the acoustics of complex hollow body networks

机译:耦合传递矩阵法与有限元法耦合分析复杂空心体网络的声学

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This paper exposes a procedure to couple multiport transfer matrices to finite elements for analyzing the acoustics of automotive hollow body networks with a minimum of memory requirements and computational time. Generally, hollow body networks are made up from a series of elongated fluid partitions similar to ducts or waveguides. These fluid partitions generally contain complex elements: junctions, noise control elements, and cavities. The location and type of these elements in the network, mainly the noise control elements (e.g., sealing parts), may impact the noise inside a car. In the proposed hybrid method, the elongated fluid partitions are modeled with fluid finite elements. All complexities are modeled with two-port or multiport transfer matrices. The coupling of these matrices to finite elements is naturally done at the weak integral formulation stage of the acoustical problem. The coupling does not add any degrees of freedom to, nor modify, the original finite element matrix system. Consequently, changing locations and types of noise control elements in the hollow body network is fast and does not require rebuilding the finite element system. This enables optimizing the acoustics of a complex network on a desktop computer. The hybrid method is compared to experimental results on a tee-shaped hollow body networks. Good correlations are obtained.
机译:本文介绍了一种将多端口传输矩阵耦合到有限元的程序,该方法可在不占用内存和最少计算时间的情况下分析汽车空心体网络的声学特性。通常,空心体网络由一系列类似于导管或波导的细长流体隔板组成。这些流体隔板通常包含复杂的元素:连接,噪声控制元素和空腔。这些元素在网络中的位置和类型(主要是噪声控制元素(例如,密封部件))可能会影响汽车内部的噪声。在提出的混合方法中,用流体有限元对细长的流体分区进行建模。所有复杂性均使用两端口或多端口传输矩阵建模。这些矩阵与有限元的耦合自然是在声学问题的弱积分公式化阶段完成的。耦合不会为原始的有限元矩阵系统增加或改变任何自由度。因此,在空心体网络中改变噪声控制元件的位置和类型很快,并且不需要重建有限元系统。这样可以优化台式计算机上复杂网络的声音。将混合方法与在T形空心体网络上的实验结果进行比较。获得良好的相关性。

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