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首页> 外文期刊>Journal of Sound and Vibration >Topology optimization of a suction muffler in a fluid machine to maximize energy efficiency and minimize broadband noise
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Topology optimization of a suction muffler in a fluid machine to maximize energy efficiency and minimize broadband noise

机译:流体机械中的吸气消声器的拓扑优化,可最大程度地提高能效并最小化宽带噪声

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摘要

A suction muffler used in a fluid machine has three functions: noise reduction; minimizing pressure drop and improving energy efficiency using acoustic effects. However, no method of suction muffler design considers all three of these functions concurrently. Therefore, in this study, we attempt to provide an integrated design method of a suction muffler in a fluid machine that considers all three functions. The topology optimization method for acoustic and fluid systems was applied to an integrated design. However, the interaction between fluid and acoustic was not considered. In addition, the acoustic input impedance of a suction muffler was used for a specific acoustical resonance frequency to improve the energy efficiency of a fluid machine. Finally, the sequential optimization method based on physical investigations was proposed to satisfy several design criteria. The proposed method was applied to the suction muffler in refrigerator's compressor. (C) 2015 Elsevier Ltd. All rights reserved.
机译:流体机械中使用的吸气消声器具有三个功能:降低噪音;利用声学效果最大程度地降低压降并提高能效。但是,没有一种吸气消声器设计方法同时考虑所有这三个功能。因此,在本研究中,我们尝试提供一种考虑了所有三个功能的流体机械中的吸气消声器的集成设计方法。将声学和流体系统的拓扑优化方法应用于集成设计。但是,没有考虑流体与声学之间的相互作用。另外,将吸气消声器的声学输入阻抗用于特定的声学共振频率,以提高流体机械的能量效率。最后,提出了基于物理研究的顺序优化方法,以满足几种设计标准。将该方法应用于冰箱压缩机的吸气消声器。 (C)2015 Elsevier Ltd.保留所有权利。

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