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Finite element acoustic simulation based shape optimization of a muffler

机译:基于有限元声学模拟的消声器形状优化

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This paper describes a methodology which combines finite element analysis and Zou-tendijk's feasible directions method for mufflers shape design. The main goal is to obtain the dimensions of the acoustic muffler with the transmission loss (TL), being maximized in the frequency range of interest. The improved four parameters method is used for TL evaluations and the Helmholtz's equation is solved numerically with the finite element method (FEM). The quadratic triangular finite element meshes are adequately constructed to control the pollution error and the optimization problem is solved using the Zoutendijk's feasible directions method due to robustness and efficiency for problems with nonlinear constraints. Numeric experiments performed with circular expansion chambers with extended inlet and outlet show results for constrained and unconstrained shape optimization.
机译:本文介绍了一种结合有限元分析和Zou-tendijk可行方向方法进行消声器形状设计的方法。主要目的是获得具有消音器的传输损耗(TL)的消声器尺寸,并在感兴趣的频率范围内将其最大化。改进的四参数方法用于TL评估,并使用有限元方法(FEM)对Helmholtz方程进行数值求解。充分构造二次三角形有限元网格以控制污染误差,并且由于具有非线性约束问题的鲁棒性和效率,因此使用Zoutendijk的可行方向方法解决了优化问题。在具有扩展的入口和出口的圆形膨胀室中进行的数值实验显示了约束形状和无约束形状优化的结果。

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