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Effect Factors Analysis of Flow Generation Noise from Muffler Element with Inserted Tube

机译:用插管造成消声器元件流动发电噪声的影响因素分析

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Using orthogonal experimental design method structure parameters of work piece for muffler element with inserted tube are determined. Flow noise regeneration of them is measured on the self development test bench. Relationship model on total sound power of flow regeneration noise and structure parameter and flow velocity is established utilizing Multiple linear regression method, model parameters are solved making use of hyper static least square method. Significance test of the model is performed, the law of total sound power level for muffler element flow regeneration noise changing with the parameters is discussed. Result shows that the established models is all highly significant under 0.01 levels, and inserted length of outlet tube and inn-diameter of inlet tube have higher effect on the flow generation noise, and decreasing the inserted length and the inn-diameter are in favor of reducing flow generation noise. But inserted length of inlet tube and expansion ratio have little effect on the flow generation noise.
机译:确定使用插入管的消声器元件的工件的正交实验设计方法结构参数。它们的流动噪声再生在自我开发测试台上测量。利用多元线性回归法建立了流量再生噪声和结构参数总声音的关系模型和流速,采用超静态最小二乘法解决了模型参数。讨论了模型的意义测试,讨论了消声元件流量再生噪声随参数的总声电线规律。结果表明,建立的模型在0.01水平下非常显着,插入的出口管和入口管的直径对流动发电噪声的影响较高,并且减少了插入的长度,并且局限性地有利于减少流动发电噪声。但插入的入口管和膨胀比对流动发电噪声影响不大。

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