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Acoustic shock formation in noise propagation during ground run-up operations of military aircraft

机译:军机地面试运行期间噪声传播中的声震形成

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A distinctive feature of many propagating, high-amplitude jet noise waveforms is the presence of acoustic shocks. Metrics indicative of shock presence, specifically the skewness of the time derivative of the waveform, the average steepening factor, and a new wavelet-based metric called the shock energy fraction (SEF), are used to quantify the strength and prevalence of acoustic shocks within waveforms recorded 10-305 m from a tethered military aircraft. The derivative skewness is more sensitive to the presence of the largest and steepest shocks, while the ASF and SEF tend to emphasize aggregate behavior of the entire waveform. These metrics are applied at engine conditions ranging from 50% to 150% engine thrust request, over a wide range of angles and distances, to assess the growth and decay of shock waves. The responses of these metrics point to significant shock formation occurring through nonlinear propagation out to 76 m from the microphone array reference position. Although these strongest shocks decay, the metrics point to continued nonlinear propagation in the far-field, out to 305 m. Many of these features are accurately characterized using a nonlinear propagation scheme based on the Burgers equation, but this scheme fails to account for multipath interference and significant atmospheric effects over the long propagation distances, resulting in an overestimation of nonlinearity metrics.
机译:许多传播的高振幅喷射噪声波形的显着特征是存在震动。指示震动存在的度量标准,特别是波形时间导数的偏斜度,平均陡峭因子,以及一种基于小波的新度量标准,即所谓的冲击能分数(SEF),用于量化声震的强度和普遍程度。系留的军用飞机记录的10-305 m的波形。导数偏斜对最大和最陡峭的冲击的存在更为敏感,而ASF和SEF倾向于强调整个波形的聚集行为。这些度量标准适用于发动机推力要求为50%至150%的发动机状态,且涉及范围广泛的角度和距离,以评估冲击波的增长和衰减。这些度量的响应指向通过从麦克风阵列参考位置到76 m的非线性传播而发生的明显震动形成。尽管这些最强烈的冲击衰减了,但度量标准指出了在远场中持续的非线性传播,延伸至305 m。使用基于Burgers方程的非线性传播方案可以准确地表征其中许多特征,但是该方案无法解决多径干扰和长距离传播过程中的显着大气效应,从而导致对非线性度量的高估。

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