首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2009 >SHAPE OPTIMIZATION OF MULTI-CHAMBER MUFFLERS WITH PLUG-INLET TUBE ON A VENTING PROCESS BY GENETIC ALGORITHMS
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SHAPE OPTIMIZATION OF MULTI-CHAMBER MUFFLERS WITH PLUG-INLET TUBE ON A VENTING PROCESS BY GENETIC ALGORITHMS

机译:遗传算法优化排气过程中带塞管的多室消声器的形状

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Research on new techniques of single-chamber plug-inlet mufflers has been addressed. However, research work on shape optimization of multi-chamber plug-inlet mufflers along with work on the maximal back pressure has been neglected. Therefore, a numerical case for eliminating a broadband steam blow-off noise using multi-chamber plug-inlet mufflers in conjunction with genetic algorithm (GA) as well as numerical decoupling technique under space-constrained pressure drop is introduced in this paper. To verify the liability of GA optimization, optimal noise abatements for various pure tones on a one-chamber plug-inlet muffler are exemplified. Also, the accuracy of the mathematical model has to be checked by experimental data. Results indicate that the maximal sound transmission losses are precisely located at the desired target tones. Consequently, both the pressure drop and the acoustical performance will be increased when the diameters (at inlet tubes and perforated holes), the perforated ratio, and the length of perforated tube decrease.
机译:已经解决了关于单室插入式消声器的新技术的研究。但是,关于多室插入式消声器的形状优化以及最大背压的研究工作被忽略了。因此,本文介绍了一种在空间受限的压降下使用多室插入式消声器结合遗传算法(GA)以及数值去耦技术消除宽带蒸汽吹出噪声的数值实例。为了验证GA优化的可靠性,举例说明了单腔插入式消声器上各种纯音的最佳降噪效果。而且,数学模型的准确性必须通过实验数据来检查。结果表明,最大的声音传输损耗正好位于所需的目标音调处。因此,当直径(进气管和穿孔处),穿孔率和穿孔管的长度减小时,压降和声学性能都会增加。

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