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On the relationship between acoustic energy density flux near the jet axis and far field acoustic intensity

机译:关于射流轴附近的声能密度通量与远场声强之间的关系

摘要

By measurement and analysis, the relationship between the distribution of the outflow of acoustic energy over the jet boundary and the far-field intensity is considered. The physical quantity used is the gradient of the pressure evaluated on a geometrical plane at the smallest possible radial distance from the jet axis, but outside the vortical region, in the area where the homogeneous wave equation is reasonably well satisfied. The numerical and experimental procedures involved have been checked out by using a known source. Results indicate that the acoustic power output per unit length of the jet, in the region from which the sound emanates, peaks at approximately 9 diameters downstream. The acoustic emission for a jet Strouhal number of about 0.3 exceeds the emission for all other Strouhal numbers nearly everywhere along the measurement plane. However, the far-field peak intensity distribution obtained from the contribution of each station was found to depend on the spatial extent of the region where sound emanates from the jet, which, in turn, depends more on the far-field angle than on the Strouhal number.
机译:通过测量和分析,考虑了声能在射流边界上的流出分布与远场强度之间的关系。所使用的物理量是在几何平面上评估的压力梯度,该几何平面在距射流轴的最小可能径向距离处,但在旋涡区域之外,在均等波动方程得到合理良好满足的区域。所涉及的数值和实验程序已通过使用已知来源进行了检验。结果表明,在从中发出声音的区域中,每单位射流长度的声功率输出在下游大约9个直径处达到峰值。喷射斯特劳哈尔数约为0.3的声发射超过了沿测量平面几乎所有位置的所有其他斯特劳哈尔数的发射。但是,发现从每个站的贡献获得的远场峰值强度分布取决于射流发出声音的区域的空间范围,这反过来更多地取决于远场角而不是声场角。斯特劳哈尔数。

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    Maestrello L.;

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  • 年度 1973
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