Dahl Peter H
Applied Physics Laboratory, University of Washington, 1013 NE 40th Street, Seattle, Washington 98105, USA.
J Acoust Soc Am. 2004 Feb;115(2):589-99. doi: 10.1121/1.1635417.
The van Cittert-Zernike theorem is used to generate models for the spatial coherence of a sound field that has been forward scattered from the sea surface. The theorem relates the spatial coherence of an observed wave field to the distant source intensity distribution associated with this field. In this case, the sea surface upon ensonification is taken to be the source, and the sea-surface bistatic cross section corrected for transmission loss is taken as a surrogate for the source intensity distribution. Improvements in methodology for generating an estimate of the 2D autocorrelation function for sea surface waveheight variation, necessary to compute the bistatic cross section, are documented in the Appendix. Upon invoking certain approximations, simple expressions for the characteristic length scales of vertical, horizontal, and horizontal-longitudinal coherence, are derived from the theorem. The three coherence length scales identify a coherence volume for the spatial coherence of a sound field arriving via the surface bounce channel. Models for spatial coherence derived from the van Cittert-Zernike theorem without these approximations compare reasonably well with measurements of complex vertical coherence made at 8 kHz and 20 kHz in the East China Sea as part of the 2001 ASIAEX field program. In terms of the ASIAEX field geometries and sea-surface conditions, at frequency of 20 kHz the coherence volume is a vertical layer 0.5 m thick by 3 m in each of the two horizontal dimensions; at 8 kHz these dimensions increase by a factor of 2.5, representing the ratio of the two frequencies.
范西特-泽尼克定理用于生成从海面正向散射的声场空间相干性模型。该定理将观测波场的空间相干性与与此场相关的远处源强度分布联系起来。在这种情况下,被声照射的海面被视为源,经传输损耗校正后的海面双基地截面被用作源强度分布的替代。附录中记录了用于生成海面波高变化二维自相关函数估计值的方法改进,这对于计算双基地截面是必要的。在采用某些近似后,从该定理推导出了垂直、水平和水平纵向相干特征长度尺度的简单表达式。这三个相干长度尺度确定了通过表面反射通道到达的声场空间相干性的相干体积。在2001年亚洲海洋实验(ASIAEX)现场计划的一部分中,未采用这些近似从范西特-泽尼克定理导出的空间相干性模型与在东海8千赫和20千赫处进行的复杂垂直相干性测量结果相当吻合。就ASIAEX现场几何形状和海面条件而言,在20千赫频率下,相干体积是一个垂直层,厚度为0.5米,在两个水平维度上各为3米;在8千赫时,这些维度增大2.5倍,代表了两个频率的比值。