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首页> 外文期刊>Geophysical Research Letters >Full waveform inversion of reflection seismic data for ocean temperature profiles
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Full waveform inversion of reflection seismic data for ocean temperature profiles

机译:海洋温度剖面反射地震数据的全波形反演

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摘要

We show that ocean temperature profiles can be accurately recovered using only acoustic methods employed at the sea surface. Using a towed air gun array and a hydrophone streamer, thermohaline boundaries are ensonified at a suite of frequencies and angles, yielding travel time trajectories and reflectivities. These data are inverted via full waveform inversion to estimate sound speed and, subsequently, a temperature profile. The high lateral data density of the seismic technique offers the potential of acoustically derived temperature profiles to be used to constrain models of ocean mixing and internal waves. Results on realistic synthetic data show that sound speed can be recovered with arbitrary accuracy when using broadband data, with known source function and recording geometry. Application to field seismic data (corroborated by expendable bathythermograph) shows that even with a seismic acquisition system not specifically calibrated for seismic oceanography, temperature contrasts within the ocean can be recovered to within one degree Celsius.
机译:我们表明,仅使用在海面使用的声学方法就可以准确地恢复海洋温度剖面。使用拖曳式气枪阵列和水听器拖缆,可以在一组频率和角度上对热盐岩边界进行声化,从而产生行进时间轨迹和反射率。这些数据通过全波形反演进行反演,以估计声速,然后评估温度曲线。地震技术的高横向数据密度提供了通过声学获得的温度剖面的潜力,这些温度剖面可用于约束海洋混合和内部波浪的模型。实际合成数据的结果表明,在使用宽带数据,已知信号源功能和录音几何形状的情况下,可以以任意精度恢复音速。应用于现场地震数据(由消耗性的水温计证实)表明,即使没有为地震海洋学专门校准的地震采集系统,海洋中的温度差也可以恢复到摄氏一度以内。

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