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Three-dimensional Simulation of Shaped Sonic Boom Signature Loudness Variations Due to Atmospheric Turbulence

机译:大气湍流引起的成形声波悬臂特征响度变化的三维模拟

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The effect of atmospheric turbulence on the loudness of shaped supersonic signatures perceived at the ground may be an important consideration for the certification and design of civil supersonic aircraft. To quantify the effect of turbulence, a numerical model suitable for predicting variations in the Perceived Level (PL) metric has been developed. The model solves a nonlinear propagation equation accounting for turbulence in two or three spatial dimensions, illuminating the variation of the PL across the ground. Inclusion of the third spatial dimension is shown to increase the predicted PL range and the standard deviation. Because both transverse dimensions are accounted for in the three-dimensional simulations, the distorted waveforms may be sampled with "virtual" arrays to estimate the performance of different microphone array types in sampling the PL distribution statistics. Repeated random sampling finds that the PL standard deviation is underpredicted by the arrays, while the mean is unbiased. Some strategies are suggested by the analysis for improving array performance in terms of increasing the accuracy and precision of the array-sampled PL standard deviation and mean.
机译:大气湍流对地面感知的成形超音速签名的响度的影响可能是民用超音速飞机认证和设计的重要考虑因素。为了量化湍流的效果,已经开发了一种适用于预测感知水平(PL)度量的变化的数值模型。该模型解决了两种或三个空间尺寸的湍流的非线性传播方程核算,在地面上照亮PL的变化。显示第三空间尺寸的包含增加预测的PL范围和标准偏差。因为两个横向尺寸都被占在三维仿真中,所以可以用“虚拟”阵列对失真的波形进行采样,以估计不同麦克风阵列类型在采样PL分布统计中的性能。重复的随机抽样发现PL标准偏差由阵列产生不偏不倚。在提高阵列采样PL标准偏差和平均值的准确性和精度方面提高阵列性能的分析,提出了一些策略。

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