Hursky P, Hodgkiss W S, Kuperman W A
Marine Physical Laboratory, Scripps Institution of Oceanography, University of California San Diego, La Jolla, 92093, USA.
J Acoust Soc Am. 2001 Apr;109(4):1355-66. doi: 10.1121/1.1353592.
The authors demonstrate MFP using data-derived modes and the sound speed profile, using no a priori bottom information. Mode shapes can be estimated directly from vertical line array data, without a priori knowledge of the environment and without using numerical wave field models. However, it is difficult to make much headway with data-derived modes alone, without wave numbers, since only a few modes at a few frequencies may be captured, and only at depths sampled by the array. Using a measured sound speed profile, the authors derive self-consistent, complete sets of modes, wave numbers, and bottom parameters from data-derived modes. Bottom parameters enable modes to be calculated at all frequencies, not just those at which modes were derived from data. This process is demonstrated on SWellEx-96 experiment data. Modes, wave numbers, and bottom parameters are derived from one track and MFP based on this information is demonstrated on another track.
作者使用数据衍生模式和声速剖面来演示匹配场处理,无需先验海底信息。模式形状可直接从垂直线列阵数据估计得出,无需环境的先验知识,也无需使用数值波场模型。然而,仅靠数据衍生模式而没有波数的话,很难取得很大进展,因为可能仅能捕获少数频率下的少数模式,而且仅在阵列采样的深度处。利用实测的声速剖面,作者从数据衍生模式中推导出自洽的、完整的模式、波数和海底参数集。海底参数使得能够在所有频率下计算模式,而不仅仅是从数据中导出模式的那些频率。此过程在SWellEx - 96实验数据上得到了演示。从一条航迹中导出模式、波数和海底参数,并基于此信息在另一条航迹上演示匹配场处理。