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Numerical studies on venting system with multi-chamber perforated mufflers by GA optimization

机译:基于遗传算法的多室多孔消声器通风系统数值研究

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Research on new techniques of perforated silencers has been well addressed and developed; however, the research work in shape optimization for a volume-constrained silence requested upon the demands of operation and maintenance inside a constrained machine room is rare. Therefore, the main purpose of this paper is to not only analyze the sound transmission loss of a multi-chamber perforated muffler but also to optimize the best design shape under space-constrained condition. In this paper, both the generalized decoupling technique and plane wave theory are used. The four-pole system matrix in evaluating the acoustic performance of sound transmission loss (STL) is also deduced in conjunction with a genetic algorithm (GA). To demonstrate the precision of the tuning ability in a muffler, various targeted pure tones are proposed in numerical cases. Results reveal that the maximal acoustical performance precisely occurred in the desired frequency. Furthermore, a noise reduction with respect to full-band exhausted noise emitted from a diesel engine is also introduced and assessed. To achieve a better optimization in GA, several test parameter values were used. Before a GA operation can be carried out, the accuracy of the mathematical models have to be checked by experimental data. The optimal result in eliminating full-band noise reveals that the overall noise reduction of a multi-chamber muffler can achieve 68 dB under space-constraint conditions. Consequently, the approach used for the optimal design of the STL proposed in this study is indeed easy, economical and quite effective.
机译:穿孔消音器新技术的研究已经得到很好的解决和发展。但是,对于在受限的机房内进行操作和维护的要求而针对体积受限的静音进行形状优化的研究工作很少。因此,本文的主要目的不仅是分析多腔穿孔消声器的传声损失,而且是在空间受限的条件下优化最佳设计形状。本文采用广义解耦技术和平面波理论。还结合遗传算法(GA)推导了用于评估声传输损耗(STL)的声学性能的四极系统矩阵。为了证明消音器的调谐能力的精度,在数值情况下提出了各种目标纯音。结果表明,最大的声学性能恰好发生在所需的频率上。此外,还引入并评估了相对于从柴油发动机发出的全频带排气噪声的噪声降低。为了在GA中实现更好的优化,使用了几个测试参数值。在执行GA运算之前,必须通过实验数据来检查数学模型的准确性。消除全频带噪声的最佳结果表明,在空间受限的条件下,多室消声器的整体噪声降低可以达到68 dB。因此,本研究中提出的用于STL最佳设计的方法确实简单,经济且相当有效。

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