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首页> 外文期刊>Journal of Sound and Vibration >Topology optimization for enhancing the acoustical and thermal characteristics of acoustic devices simultaneously
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Topology optimization for enhancing the acoustical and thermal characteristics of acoustic devices simultaneously

机译:拓扑优化,用于同时增强声学器件的声学和热特性

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摘要

In this study, an optimal design method was developed using topology optimization for an acoustic device in the presence of temperature gradient. Although acoustic properties were strongly affected by temperature distribution, many topology optimization problems for optimal acoustic devices were formulated under the assumption that temperature was uniformly distributed in the design domain or that heat transfer through boundaries was negligible. An acoustically optimized topology could negatively influence the heat transfer characteristics of a mechanical device. To figure out this issue, thermo-acoustical topology optimization problems were formulated for an optimal design of the acoustic device. A general form of a finite element equation was developed for acoustical and thermal analyses, and interpolation functions were carefully selected to obtain a black-and-white topology in the final step. Optimal design examples were solved for various acoustical and thermal design requirements, and the physical characteristics of an optimal muffler obtained using the proposed approach in the present study were compared with those of a well-known existing design. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在该研究中,利用在温度梯度存在下使用声学器件的拓扑优化开发了最佳设计方法。虽然受温度分布强烈影响声学性质,但是在假设温度均匀分布在设计结构域中或通过边界的热传递可以忽略不计,但是在最佳声学器件的许多拓扑优化问题中被配制。声学优化的拓扑可以对机械装置的传热特性产生负面影响。要弄清楚这个问题,配制了热声拓扑优化问题以获得声学装置的最佳设计。为声学和热分析开发了一般形式的有限元方程,并且仔细选择内插功能以在最终步骤中获得黑白拓扑。在各种声学和热设计要求解决了最佳设计示例,并将使用本研究中所提出的方法获得的最佳消声器的物理特性与众所周知的现有设计。 (c)2017 Elsevier Ltd.保留所有权利。

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