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首页> 外文期刊>The Journal of the Acoustical Society of America >Comparisons of laboratory scale measurements of three-dimensional acoustic propagation with solutions by a parabolic equation model
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Comparisons of laboratory scale measurements of three-dimensional acoustic propagation with solutions by a parabolic equation model

机译:用抛物线方程模型比较三维声学传播的实验室尺度测量结果与解的比较

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摘要

In this paper, laboratory scale measurements of long range across-slope acoustic propagation in a three-dimensional (3-D) wedge-like environment are compared to numerical solutions. In a previous work, it was shown that the experimental data contain strong 3-D effects like mode shadow zones and multiple mode arrivals, in qualitative agreement with theoretical and numerical predictions. In the present work, the experimental data are compared with numerical solutions obtained using a fully 3-D parabolic equation based model. A subspace inversion approach is used for the refinement of some of the parameters describing the model experiment. The inversion procedure is implemented in a Bayesian framework based on the exhaustive search over the parameter space. The comparisons are performed both in the time and in the frequency domain using the maximum a posteriori estimates of the refined parameters as input in the 3-D model. A very good quantitative agreement is achieved between the numerical predictions provided by the 3-D parabolic equation model and the experimental data.
机译:本文将三维(3-D)楔形环境中长距离跨坡声传播的实验室规模测量结果与数值解进行了比较。在先前的工作中,表明实验数据包含强3D效果,例如模式阴影区和多个模式到达,与理论和数值预测在质量上吻合。在目前的工作中,将实验数据与使用完全基于3-D抛物线方程的模型获得的数值解进行比较。子空间反演方法用于细化描述模型实验的一些参数。基于对参数空间的详尽搜索,在贝叶斯框架中实现了反演过程。使用精制参数的最大后验估计作为3D模型的输入,在时域和频域中进行比较。 3-D抛物线方程模型提供的数值预测与实验数据之间实现了很好的定量一致性。

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