Institut des Sciences de la Terre, Université Joseph Fourier & Centre National de la Recherche Scientifique (CNRS), Grenoble, France.
J Acoust Soc Am. 2013 Apr;133(4):1945-52. doi: 10.1121/1.4792354.
Data collected over more than eight consecutive hours between two source-receiver arrays in a shallow water environment are analyzed through the physics of the waveguide invariant. In particular, the use of vertical arrays on both the source and receiver sides provides source and receiver angles in addition to travel-times associated with a set of eigenray paths in the waveguide. From the travel-times and the source-receiver angles, the eigenrays are projected into a group-velocity versus phase-velocity (Vg-Vp) plot for each acquisition. The time evolution of the Vg-Vp representation over the 8.5-h long experiment is discussed. Group speed fluctuations observed for a set of eigenrays with turning points at different depths in the water column are compared to the Brunt-Väisälä frequency.
在浅水环境中,通过导波不变量的物理原理分析了在两个源-接收器数组之间连续超过 8 个小时收集的数据。特别是,在源和接收器两侧使用垂直数组除了与导波中的一组本征射线路径相关的传播时间之外,还提供了源和接收器角度。从传播时间和源-接收器角度,本征射线被投影到每个采集的群速度与相速度(Vg-Vp)图中。讨论了在 8.5 小时长的实验过程中 Vg-Vp 表示的时间演变。将在水柱中不同深度处具有转折点的一组本征射线的群速度波动与 Brunt-Väisälä 频率进行了比较。