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Affecting Study on Flow Regeneration Noise from Muffler Element with Perforated Plate

机译:用多孔板的消声元件流动再生噪声的影响研究

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Making use of orthogonal experiment design method samples on muffler element with perforated plate are fixed, and a model of total sound power of flow regeneration noise and flow velocity, perforated diameter, expansion ratio, perforated ratio and length of perforated plate to inlet expansion is established, and the model parameters are solved, and quantity research of the noise effect is performed, and spectrum characteristic of flow regeneration noise from the muffler element is analyzed. It is achieved that the perforated diameter and the expansion ratio have important effect on flow regeneration noise, the reducing of the perforated diameter and improving expansion ratio is in favor of the reduction of flow regeneration noise from muffler element with perforated plate, and peak value frequency appears in the middle and high range, and the high frequency may be high velocity air flowing through little holes on the plate.
机译:利用正交实验设计方法用多孔板的消声器元件上的样品是固定的,并且建立了流量再生噪声噪声和流速,穿孔直径,膨胀比,穿孔板的总声音功率模型,穿孔板的进气膨胀并且求解模型参数,并进行噪声效果的数量研究,分析了来自消声器元件的流量再生噪声的光谱特性。实现了多孔直径和膨胀率对流量再生噪声具有重要影响,对穿孔直径和提高的膨胀比的减小有利于从多孔板的消声器元件减少流量再生噪声,以及峰值频率出现在中间和高范围内,高频可能是在板上流过小孔的高速空气。

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