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Sonic Boom Pressure Signature Uncertainty Calculation and Propagation to Ground Noise (Invited)

机译:声波动臂压力签名的不确定度计算和对地噪声的传播(受邀)

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The objective of this study was to outline an approach for the quantification of uncertainty in sonic boom measurements and to investigate the effect of various near-field uncertainty representation approaches on ground noise predictions. These approaches included a symmetric versus asymmetric uncertainty band representation and a dispersion technique based on a partial sum Fourier series that allows for the inclusion of random error sources in the uncertainty. The near-field uncertainty was propagated to the ground level, along with additional uncertainty in the propagation modeling. Estimates of perceived loudness were obtained for the various types of uncertainty representation in the near-field. Analyses were performed on three configurations of interest to the sonic boom community: the SEEB-ALR, the 69° Delta Wing, and the LM 1021-01. Results showed that representation of the near-field uncertainty plays a key role in ground noise predictions. Using a Fourier series based dispersion approach can double the amount of uncertainty in the ground noise compared to a pure bias representation. Compared to previous computational fluid dynamics results, uncertainty in ground noise predictions were greater when considering the near-field experimental uncertainty.
机译:这项研究的目的是概述一种量化声波测量中不确定度的方法,并研究各种近场不确定性表示方法对地面噪声预测的影响。这些方法包括对称与不对称不确定带表示,以及基于部分和傅里叶级数的色散技术,该技术允许在不确定性中包含随机误差源。近场不确定性连同传播建模中的其他不确定性一起传播到地面。对于近场中各种类型的不确定性表示,可以获得感知响度的估计。对声波繁荣社区感兴趣的三种配置进行了分析:SEEB-ALR,69°三角翼和LM 1021-01。结果表明,近场不确定性的表示在地面噪声预测中起着关键作用。与纯偏置表示相比,使用基于傅立叶级数的色散方法可使地面噪声的不确定性增加一倍。与以前的计算流体动力学结果相比,当考虑近场实验不确定性时,地面噪声预测的不确定性更大。

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