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Elastic parabolic equation and normal mode solutions for seismo-acoustic propagation in underwater environments with ice covers

机译:含冰层的水下环境中声波传播的弹性抛物方程和常模解

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摘要

Sound propagation predictions for ice-covered ocean acoustic environments do not match observational data: received levels in nature are less than expected, suggesting that the effects of the ice are substantial. Effects due to elasticity in overlying ice can be significant enough that low-shear approximations, such as effective complex density treatments, may not be appropriate. Building on recent elastic seafloor modeling developments, a range-dependent parabolic equation solution that treats the ice as an elastic medium is presented. The solution is benchmarked against a derived elastic normal mode solution for range-independent underwater acoustic propagation. Results from both solutions accurately predict plate flexural modes that propagate in the ice layer, as well as Scholte interface waves that propagate at the boundary between the water and the seafloor. The parabolic equation solution is used to model a scenario with range-dependent ice thickness and a water sound speed profile similar to those observed during the 2009 Ice Exercise (ICEX) in the Beaufort Sea. (C) 2016 Acoustical Society of America.
机译:对于被冰覆盖的海洋声学环境的声音传播预测与观测数据不符:自然界中接收到的水平低于预期,这表明冰的影响是巨大的。覆冰上的弹性造成的影响可能非常显着,以至于低剪切近似值(例如有效的复杂密度处理)可能不合适。在最近的弹性海底建模发展的基础上,提出了将冰视为弹性介质的与范围相关的抛物线方程解。该解决方案是针对与范围无关的水下声传播的导出弹性法向模式解决方案进行基准测试的。两种解决方案的结果都能准确预测在冰层中传播的板块弯曲模式,以及在水和海底之间的边界处传播的Scholte界面波。抛物线方程解用于模拟与范围相关的冰厚度和水声速剖面的情景,该情景类似于在波弗特海进行的2009年冰运动(ICEX)期间观察到的情景。 (C)2016年美国声学学会。

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