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Finite element analysis of an industrial reactive silencer

机译:工业反应消声器的有限元分析

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Classical analytical models used for prediction of the performance of reactive silencers are limited to conditions where the dimensions of the duct and resonators are small compared to the wavelength of the sound. Finite Element Analysis does not suffer from such limitations and has therefore been used to analyse the design of a reactive silencer for the exhaust stack of a 980MW power station. To assist in the design process, resonators of various dimensions were analysed using FEA which has led to the derivation of expressions for the resonance frequencies of slot-type rhomboid shaped resonators as a function of the geometry. An important design issue is the influence that adjacent resonators have on the overall performance of the system. It was found that when resonators of similar resonance frequency are in close proximity, they can interact and lead to a decrease in the overall performance compared to that of a single resonator.
机译:用于预测反应消声器性能的经典分析模型仅限于管道和谐振器的尺寸与声音的波长相比的条件。有限元分析不会遭受这种限制,因此用于分析一个980mW发电站的排气堆的反应消声器的设计。为了有助于设计过程,使用FEA分析各种尺寸的谐振器,该FEA导致槽型菱形谐振器的谐振频率作为几何形状的谐振频率的衍生。重要的设计问题是相邻谐振器对系统整体性能的影响。结果发现,当相似谐振频率的谐振器靠近时,它们可以相互作用并导致与单个谐振器相比整体性能的减小。

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