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A statistical design optimization study of a multi-chamber reactive type silencer using simplex centroid mixture design

机译:使用单纯x质心混合设计的多腔电流型消音器的统计设计优化研究

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摘要

This study aims to optimize the acoustic performance of a silencer with baffles having extension tubes. It considers the position, the number and the extension geometry of the baffles as design variables and sound transmission loss as the response variable to be optimized. The finite element analysis software ABAQUS is used to compute the response values for different combinations of design variables. The statistical design of the experiments provides a mathematical framework for such computer design optimization studies with multiple design variables. Yet, it has not been used for design optimization of silencers in the literature. In this study, simplex centroid mixture designs, a type of response surface method, are used in the statistical design of experiments. They can provide faster convergence on the optimization problem. The design involves one, two and three baffles with different positions and extension tube lengths. The outcome of this study indicates that obtaining ABAQUS software solutions at design points for each baffle number allows constructing nonlinear regression equations expressing the response variable as a function of the design variables. The equations obtained are then used to compute optimal values. Further evaluation of these equations indicates that better sound transmission loss values are obtained when the baffle number is increased, and the lengths of the extension tubes are set at high values. Moreover, it is possible to use the statistical experimental design approach implemented in this study for other types of silencers with different baffle geometries and design variables.
机译:本研究旨在优化具有延伸管的挡板的消音器的声学性能。它考虑了挡板的位置,数字和扩展几何形状作为设计变量和声音传输损耗作为优化的响应变量。有限元分析软件ABAQUS用于计算不同组合的设计变量的响应值。实验的统计设计为这种计算机设计优化研究提供了多种设计变量的数学框架。然而,它尚未用于文学中的消音器的设计优化。在本研究中,单纯x质心混合物设计,一种响应面法,用于实验的统计设计。它们可以在优化问题上提供更快的融合。该设计涉及一个,两个和三个具有不同位置和延伸管长度的挡板。本研究的结果表明,在每个挡板号的设计点处获得ABAQUS软件解决方案允许构造表示响应变量的非线性回归方程作为设计变量的函数。然后使用获得的等式来计算最佳值。对这些等式的进一步评估表明当挡板数增加时获得更好的声音传输损耗值,并且延伸管的长度设定为高值。此外,可以使用本研究中实现的统计实验设计方法,用于具有不同挡板几何形状和设计变量的其他类型的消音器。

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