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A new method for calculating the sonic conductance of airflow through a short-tube orifice:

机译:一种通过短管孔来计算气流声态传导的新方法:

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In this study, we proposed a method for calculating the sonic conductance of a short-tube orifice. First, we derived a formula for calculating the sonic conductance based on a continuity equation, a momentum equation and the definition of flow-rate characteristics. The flow-rate characteristics of different orifices were then measured using the upstream constant-pressure test method in ISO 6358. Based on these test data, the theoretical formula was simplified using the least squares fitting method, the accuracy of which was verified experimentally. Finally, the effects of the diameter ratio, the length-to-diameter ratio and the critical pressure ratio were analysed with reference to engineering applications, and a simplified formula was derived. We conclude that the influence of the diameter ratio is greater than that of the length-to-diameter ratio. When the length-to-diameter ratio is 5, its effect can be neglected. The critical pressure ratio has little effect on the sonic conductance of a short-tube ...
机译:在该研究中,我们提出了一种用于计算短管孔的声音电导的方法。首先,我们基于连续性方程,动量方程和流量特性的定义来派生用于计算声音电导的公式。然后使用ISO 6358中的上游常数压力测试方法测量不同孔的流量特性。基于这些测试数据,使用最小二乘拟合方法简化了理论公式,其精确验证了实验验证。最后,参照工程应用分析了直径比,长度与直径比和临界压力比的影响,得到了简化的公式。我们得出结论,直径比的影响大于长度到直径比的影响。当长度到直径的比率<5时,其效果可以忽略。临界压力比对短管的声音电导影响不大。

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