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Rewinding the waves: tracking underwater signals to their source

机译:倒转海浪:追踪水下信号到其来源

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摘要

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, reveal unique pressure signatures that could be associated with objects impacting at the sea surface, such as falling meteorites, or the missing Malaysian Aeroplane MH370. To examine the recorded signatures, we carried out experiments with spheres impacting at the surface of a water tank, where we observed almost identical pressure signature structures. While the pressure structure is unique to impacting objects, the evolution of the radiated acoustic waves carries information on the source. Employing acoustic–gravity wave theory we present an analytical inverse method to retrieve the impact time and location. The solution was validated using field observations of recent earthquakes, where we were able to calculate the eruption time and location to a satisfactory degree of accuracy. Moreover, numerical validations confirm an error below 0.02% for events at relatively large distances of over 1000 km. The method can be developed to calculate other essential properties such as impact duration and geometry. Besides impacting objects and earthquakes, the method could help in identifying the location of underwater explosions and landslides.
机译: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站记录的数据分析显示,独特的压力信号可能与撞击海面的物体有关,例如坠落的陨石,或失踪的马来西亚飞机MH370。为了检查记录的签名,我们对球撞击水箱表面进行了实验,在那里我们观察到几乎相同的压力签名结构。尽管压力结构是撞击物体所特有的,但辐射声波的演变却在源头上传递了信息。利用声重力波理论,我们提出了一种解析逆方法来检索冲击时间和位置。该解决方案使用最近地震的现场观测进行了验证,在该观测中,我们能够以令人满意的准确性计算喷发时间和位置。此外,数值验证证实了在相对较大的距离(超过1000 km)中发生的事件的误差低于0.02%。可以开发该方法来计算其他基本属性,例如冲击持续时间和几何形状。除了撞击物体和地震,该方法还可以帮助确定水下爆炸和滑坡的位置。

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