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Noise reduction from air intakes of compressors and blower fans

机译:压缩机的进气量和鼓风机风扇的降噪

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The noise radiated by from air intakes of compressors and blower fans is a source of noise for the territory of the enterprise and the surrounding area. The using of acoustic barriers (screens) and dissipative silencers for reducing noise from air intake of compressor and blower fans were analyzed. The effect of the distance from the acoustic screen to the air intake on the reduction of noise and changing the aerodynamic drag were investigating. It is detected the region of using acoustic barriers to reduce noise from air intake of compressors and from air intake of blower fans. The baffle silencers should be used when the noise reduction more 10 dBA. The baffle silencers have a high acoustic efficiency, but create additional aerodynamic drag. It stressed that the air intake design plays an important role in the aerodynamic drag of the air path. The case of reconstruction was shown, when the air channel with improved aerodynamic air intake and the silencer has less aerodynamic drag then the air channel without silencer before reconstruction. This is achieved by the implementation of the air intake structure. The results of acoustic measurements of the baffle silencer are shown.
机译:来自压缩机的进气口和鼓风机风扇的噪音是企业领域和周边地区的噪音来源。分析了用于减少压缩机的进气和鼓风机的空气摄入量的声屏障(屏幕)和耗散消声器的使用。研究了从声学屏幕到空气摄入量的距离对噪声的降低和改变空气动力学阻力的影响。它被检测到使用声屏障来减少压缩机的进气量的噪音以及鼓风机风扇的进气。当降噪更多10 dBA时,应使用挡板消音器。挡板消音器具有高声学效率,但创造了额外的空气动力学阻力。它强调,进气设计在空气道的空气动力学阻力中起着重要作用。当具有改进的空气动力学空气摄入量的空气通道和消音器的空气通道具有更少的空气动力学拖曳之前,在重建之前没有消音器的空气通道,当空气通道具有更少的空气通道时。这是通过实施进气结构来实现的。显示了挡板消音器的声学测量结果。

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