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GPS/Acoustic seafloor geodetic observation: method of data analysis and its application

机译:GPS /声海底大地观测:数据分析方法及其应用

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We have been developing a system for detecting seafloor crustal movement by combining kinematic GPS and acoustic ranging techniques. A linear inversion method is adopted to determine the position of seafloor stations from coordinates of a moving survey vessel and measured travel times of acoustic waves in seawater. The positioning accuracy is substantially improved by estimating the temporal variation of the acoustic velocity structure. We apply our method to the ranging data acquired at the seafloor reference point, MYGI, located off Miyagi Prefecture, in northeast Japan, where a huge earthquake is expected to occur in the near future. A time series of horizontal coordinates of MYGI obtained from seven campaign observations for the period 2002-2005 exhibits a linear trend with a scattering rms of about 2 cm. A linear fit to the time series gives an intraplate crustal velocity of more than several centimeters per year towards the WNW, which implies strong interplate coupling around this region. The precision of each campaign solution was examined at MYGI and other seafloor reference points along the Nankai Trough through comparison of independent one-day subset solutions within the campaign. The resultant repeatability looks to be well-correlated with the temporal and spatial stability of the acoustic velocity structure in the seawater depending on the region as well as the season.
机译:我们已经在开发一种通过结合运动学GPS和声学测距技术来检测海底地壳运动的系统。采用线性反演方法,根据移动的测量船的坐标和所测量的声波在海水中的传播时间来确定海底站的位置。通过估计声速结构的时间变化,可以大大提高定位精度。我们将我们的方法应用于在日本东北部宫城县海底参考点MYGI所获得的测距数据,该地区在不久的将来会发生大地震。从2002年至2005年的7次战役观测中获得的MYGI的水平坐标时间序列显示出线性趋势,散射均方根约为2 cm。与时间序列的线性拟合使板块内地壳向WNW的速度每年超过几厘米,这意味着该区域周围板间的强耦合。通过比较活动中独立的一日子集解决方案,在MYGI和南开海槽沿岸的其他海底参考点检查了每个活动解决方案的精度。最终的可重复性看起来与海水声速结构在时间和空间上的稳定性密切相关,取决于区域和季节。

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