太平洋长表面波包的联合雷达监测

S. Velichko, Oleksandr Matweev, Dmytry Bychkov, V. Ivanov, V. Tsymbal
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摘要

为了继续更详细地研究世界海洋表面地震活动的表现,本文在西北太平洋千岛-堪察加海沟附近的地震活跃区验证了机载雷达监测和长表面波包研究的复杂技术。在验证先前工作中提出的技术时,我们使用了研究区域内3厘米无线电波长度范围内的两个系列的海面雷达调查数据。第一组雷达测量包括沿南北方向飞行的航迹,为了比较,第二组在东西方向飞行的结果也加了进去。这些雷达图像,在工作中,检测到两个表面波包的表现,从同一区域,在同一方向,以16小时的间隔传播。为了全面研究基于两个系列雷达图像的表面波包,并确定其起源的性质,对波包分量的非线性形式进行了空间和频谱相结合的分析。结果确定了表面波包的空间尺度(5 ~ 10 km)、包的波分量长度(1 ~ 5 km)和包的运动速度(6.1 m/s)。分析涉及海洋-大气近表层的参数,这些参数是由“彼得罗夫院士号”科考船获得的实地测量数据提供的。这包括近地面风的方向和速度,风浪和涌浪的状态,表面水流的速度等。此外,还利用了沿表面波包路径的测深数据和该地区的地震活动数据。最后,假设观测到的表面波包是Korteweg - de Vries孤子,它是由于地震和随后的余震在千岛海沟陡峭的水下斜坡上崩塌而产生的。发展的机载雷达技术也可用于世界海洋表面的卫星监测系统,以警告潜在危险的长波接近海岸。
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Combined Radar Monitoring of Long Surface Wave Packets in the Pacific Ocean
In order to continue and more detailed study of the manifestations of seismic activity on the World Ocean surface, in this work we verified the complex technique of airborne radar monitoring and research of long surface wave packets in the seismically active region in the Northwest Pacific Ocean near the Kuril-Kamchatka Trench. When verifying the technique proposed in the previous work, we used data from two series of radar surveys of the sea surface within the study area in the 3-cm range of radio wave lengths. The first series of radar surveys had included tacks of flights along the north–south direction, to which, for comparison, the results of the second series in the west–east direction were added. These radar images, presented in the work, detect manifestations of two surface wave packets propagating from the same area, in the same direction, with an interval of 16 hours. For a comprehensive study of surface wave packets based on a set of radar images of two series and to establish the nature of their origin, a combined spatial and spectral analysis of the nonlinear form of the wave packet components was performed. As a result, the spatial scale of surface wave packets (5–10 km), the lengths of the wave components of the packets (1–5 km) and the speed of packets movement (6.1 m/s) were determined. The analysis involved the parameters of the ocean-atmosphere near-surface layer, provided by operational in situ measurements, which were obtained by the research vessel "Akademik Petrov". This included the direction and speed of the near-surface wind, the state of wind waves and swell, the speed of the surface current, etc. In addition, data on bathymetry along the path of the surface wave packet and seismic activity in the area were used. Finally, it was assumed that the observed packets of surface waves are Korteweg – de Vries solitons, which arise as a result of collapses on the steep underwater slopes of the Kuril-Kamchatka Trench due to a seismic shock and the aftershock that followed it. The developed airborne radar technique can also be used in satellite monitoring of the surface of the World Ocean in systems for warning about the approach of potentially dangerous long waves to the coast.
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