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Effect of sea-bottom elasticity on the propagation of acoustic–gravity waves from impacting objects

机译:海底弹性对撞击物体声重力波传播的影响

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摘要

Recent analysis of data, recorded on March 8th 2014 at the Comprehensive Nuclear-Test-Ban Treaty Organisation's hydroacoustic stations off Cape Leeuwin Western Australia, and at Diego Garcia, has led to the development of an inverse model for locating impacting objects on the sea surface. The model employs the phase velocity of acoustic-gravity waves that radiate during the impact, and only considers their propagation in the water layer. Here, we address a significant characteristic of acoustic-gravity waves: the ability to penetrate through the sea-bottom, which modifies the propagation speed and thus the arrival time of signals at the hydrophone station. Therefore, we revisit some signals that are associated with the missing Malaysian Aeroplane MH370, and illustrate the role of sea-bottom elasticity on determining impact locations.
机译:最近的数据分析于2014年3月8日在西澳大利亚州吕温角角附近的全面禁止核试验条约组织的水声站和迭戈加西亚的记录中,导致开发了用于在海面定位撞击物体的逆模型。 。该模型使用了在撞击过程中辐射的声重力波的相速度,仅考虑了它们在水层中的传播。在这里,我们要解决声重力波的一个重要特征:穿透海底的能力,这会改变传播速度,从而改变信号在水听器站的到达时间。因此,我们将重新审视与失踪的马来西亚飞机MH370有关的一些信号,并说明海底弹性在确定撞击位置上的作用。

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