Focused arrivals in shallow water propagation in the Straits of Florida

H. Deferrari, N. Williams, Hien B. Nguyen
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引用次数: 12

Abstract

Observations of multipath on the western shelf area of the Florida Straits have consistently revealed an intense arrival associated with refracted bottom reflected (RBR) rays/modes. The ‘late’ or ‘focused’ arrival is 15 to 20 dB higher than other arrivals. Parabolic Equation and Normal Mode propagation models and the shallow water invariant, beta, are used to explain the focusing. The sound speed profile that produces the focusing comes about from a combination of a strong downward refracting layer resulting from the geostrophic equilibrium of the Florida current on top of a well mixed turbulent bottom boundary layer. The resulting c(z) resembles cosh(g(1−z/D)), which produce perfect focusing at every range, that is, all RBR modes have the exact same group velocity.
佛罗里达海峡浅水区集中到达
对佛罗里达海峡西部陆架区的多径观测显示,强烈的到达与折射底反射(RBR)射线/模式有关。“延迟”或“集中”到达比其他到达高15至20分贝。利用抛物方程和法向模式传播模型以及浅水不变量β来解释聚焦。产生聚焦的声速剖面是由佛罗里达洋流的地转平衡在混合良好的湍流底边界层上形成的强烈向下折射层的组合而产生的。由此产生的c(z)类似于cosh(g(1−z/D)),在每个范围内都能产生完美的聚焦,即所有RBR模式都具有完全相同的群速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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